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Se realizaron actividades de observación de biodiversidad con la comunidad vinculada al proceso y se registraron las interacciones bióticas observadas. Se reportaron dos tipos de interacciones principales: Visita floral y herbivoría específicamente frugivoría. Los soporte de cada una de esas observaciones, corresponden a registros multimedia (fotografías, videos y audios), los cuales fueron sometidos a un proceso de determinación taxonómica para ser incluidos en la actualización de la base de datos de la plataforma de la Red Biótica del Jardín Botánico.</p><p>El conjunto de datos consta de 317 registros de interacciones bióticas observados entre marzo y octubre del 2023.</p>","language":"spa","logoUrl":"https://statics.sibcolombia.net/sib-resources/images/logos-socios/500px/jbb.jpg","citation":{"text":"Montoya Quiroga A M (2025). Interacciones bióticas en zonas de importancia para la conservación de la localidad de Kennedy a través de un proceso de Ciencia Participativa. 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Departamento Técnico Administrativo del Medio Ambiente, DAMA","citationProvidedBySource":false},{"text":"Achiardi, F. C. P., Arroyo, S., & Perilla, Y. R. L. (2017). Insectos de los Parques Ecológicos Distritales Humedales de Bogotá, DC.","citationProvidedBySource":false},{"text":"Capador, W. Y. F., Arroyo, S., & Perilla, Y. R. L. (2017). Mamíferos de los Parques Ecológicos Distritales de Humedales de Bogotá, DC.","citationProvidedBySource":false},{"text":"Chaparro-Herrera, S. y D. Ochoa (eds). 2015. Aves de los Humedales de Bogotá, Aportes para su Conservación. Asociación Bogotana de Ornitología -ABO-. Bogotá D.C, Colombia 92 p.","citationProvidedBySource":false}],"curatorialUnits":[],"taxonomicCoverages":[{"description":"Se registraron un total de 317 observaciones, de las cuales 181 corresponden a especies vegetales y 136 a fauna silvestre (50 artrópodos y 86 del phylum cordata).","coverages":[{"scientificName":"Tracheophyta","commonName":"Plantas vasculares","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Arthropoda","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Chordata","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}}]}],"geographicCoverages":[{"description":"Zonas de importancia para la conservación de Kennedy: Reserva Distrital de Humedal El Burro, Techo, Huerta Monterrey y Canal La Magdalena","boundingBox":{"minLatitude":4.622,"maxLatitude":4.668,"minLongitude":-74.153,"maxLongitude":-74.06,"globalCoverage":false}}],"temporalCoverages":[{"@type":"range","start":"2023-03-01T00:00:00.000+00:00","end":"2023-10-31T00:00:00.000+00:00"}],"keywordCollections":[{"thesaurus":"GBIF Dataset Type Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_type_2015-07-10.xml","keywords":["Occurrence"]},{"thesaurus":"NA","keywords":["Interacciones bióticas","Conservación","Ciencia participativa","Biodiversidad urbana"]},{"thesaurus":"GBIF Dataset Subtype Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_subtype.xml","keywords":["Observation"]}],"project":{"title":"Proyecto de Inversión 7679: Investigación para la conservación de los ecosistemas y la flora de la Región y Bogotá","identifier":"7679","contacts":[{"type":"POINT_OF_CONTACT","primary":false,"userId":[],"firstName":"Claudia Alexandra","lastName":"Pinzón Osorio","position":[],"email":[],"phone":[],"homepage":[],"address":[]}],"funding":"Proyecto de inversión 7679, contrato No 202-2023","awards":[],"studyAreaDescription":"Distrito capital","designDescription":"Objetivo general: Aumentar la capacidad institucional para la gestión del conocimiento en conservación, restauración y uso sostenible de la flora en áreas de la estructura ecológica y de interés ambiental en la ciudad región. 1. Generar conocimiento acerca de la representatividad, funcionamiento y dinámicas que inciden en los cambios y estado de la diversidad biológica y los servicios ecosistémicos en áreas estratégicas de importancia ambiental. 2. Desarrollar procesos de investigación en restauración ecológica de los efectos de los disturbios naturales y antrópicos sobre la composición, estructura y función de los ecosistemas de Bogotá 3. Desarrollar investigaciones asociado al uso de las especies vegetales nativas que permita un aprovechamiento ambientalmente sustentable a través de una estrategia con base técnico-científica. 4. Desarrollar una estrategia institucional que permita cumplir con los requisitos para que el Jardín Botánico sea acreditado como centro de investigación para la conservación y los ecosistemas de la ciudad región.","relatedProjects":[],"abstract":"El Jardín Botánico de Bogotá tiene como misión contribuir a la conservación de la flora del bosque altoandino y páramo, a través de tres procesos de gestión del conocimiento: Generación, apropiación y aplicación. Para la generación del conocimiento, la Subdirección Científica se hace responsable de aumentar la capacidad institucional para la gestión del conocimiento en conservación, restauración y uso sostenible de la flora en áreas de la estructura ecológica y de interés ambiental en la ciudad región, en el marco del Plan de Desarrollo \"Un nuevo contrato social y ambiental para la Bogotá del siglo XXI\". El Jardín Botánico desde su fundación ha fortalecido su capacidad investigativa sobre estos tres componentes de gestión del conocimiento: Conservación, restauración ecológica y uso sostenible, y lo ha hecho desde 1992 con los recursos del Distrito Capital, como establecimiento público del orden descentralizado de la Alcaldía Mayor de Bogotá D.C. A la fecha, cuenta con un acervo informativo que le ha permitido analizar y dar respuestas parciales a las complejas problemáticas ecológicas del Distrito, con énfasis en la flora. A través de su historia, ha determinado el desarrollo de sus investigaciones utilizando diferentes estrategias de vinculación del personal científico y técnico, así: Vinculación directa de sus investigadores o relación con un tercero en calidad de investigador. En este análisis de alternativas se propone realizar un balance de la vinculación directa del personal al Jardín Botánico, para avanzar en sus procesos de investigación, comparado con la experiencia con un ente académico de trayectoria Nacional, quien para el desarrollo de los mismos estudios propuestos por entidad determina un incremento en los costos correspondiente al 30%. Por ampliar la explicación, si un proceso de investigación en el campo de la conservación, tiene un valor promedio para el Jardín Botánico de $100.000.000 de pesos m/cte., lo cual incluye mano de obra calificada y no calificada, equipos, materiales, transporte, entre otros costos directos e indirectos; comparativamente el ente académico externo incrementa esos costos en 30%, para un total de $130.000.000 de pesos m/cte. En términos de los resultados, tanto el Jardín Botánico como el ente académico externo, generan un producto de calidad para la ciudad. En cuanto al tema administrativo, el Jardín Botánico incurre en un trabajo administrativo adicional a la investigación. En ese caso, este proyecto analiza dos alternativas: Alternativa 1. El desarrollo de los procesos de investigación en conservación, restauración ecológica y uso sostenible de la flora de los ecosistemas del Distrito Capital y la región, en cumplimiento de su misión a través de sus propios recursos científicos, técnicos y administrativos. Alternativa 2: El Jardín Botánico terceriza la generación de conocimiento, a través de la contratación de un ente académico que desarrolle la investigación en sus tres ejes temáticos misionales, minimizando el desgaste administrativo. Producto de este análisis, el Jardín Botánico determina la selección de la Alternativa 1, ya que además de los argumentos financiero y administrativos, anteriormente expuestos y que determinan una mayor eficiencia en el manejo de los recursos, se busca como producto final para la entidad, la acreditación como centro de investigación del país y la recategorización de su actual grupo de investigación B, a través del cumplimiento de sus actividades de ciencia, tecnología e innovación (CTI), e investigación y desarrollo."},"samplingDescription":{"studyExtent":"La investigación se desarrolló en la localidad de Kennedy, dentro del conector ecosistémico Subcuenca río Fucha priorizando cuatro (4) zonas de importancia para la conservación de la localidad de Kennedy que hacen parte de la Estructura Ecológica Principal (EEP) y de la Estructura Ecológica Complementaria (EEC): Corredor La Magdalena conformado por el parque Otero de Francisco y el Canal La Magdalena, Huerta Monterrey, Reserva Distrital de Humedal El Burro y  Humedal de Techo. Las zonas de estudio fueron seleccionadas teniendo en cuenta la existencia de procesos ciudadanos organizados en el territorio en donde sus actividades estuvieran enfocadas en la conservación de la biodiversidad urbana. Este proceso de investigación en biodiversidad e interacciones bióticas estuvo acompañado de los representantes de los grupos comunitarios Conexiones La Selva, Fundación Monterrey Ecohídrico y Pakcastilla, que en conjunto conforman el grupo del Corredor de Desarrollo Sostenible conformando un proceso de Ciencia Participativa","sampling":"Se realizaron actividades de observación de biodiversidad con la comunidad una vez por semana en cada zona durante los meses de marzo-octubre del 2023. Las jornadas de observación se realizaron horas cálidas del día (entre 9 a 2 p.m.) en promedio 7 horas diarias semanales en cada zona de estudio. Se establecieron  puntos de muestreo para cada zona, los cuales no se sobrelapan y presentaba abundante vegetación. Se tomaron registros multimedia (fotografías y/o videos) como soporte de la observación y las relacionadas con interacciones bióticas fueron insumos para la actualización de la Red de Interacciones Bióticas del JBB.","methodSteps":["Se realizó un listado de especies general de la cobertura vegetal de las 4 zonas de estudio. Para la determinación y corroboración de las plantas se tomaron registros fotográficos para comparación y corroboración de experto, se usaron guías de campo del Field Museum (https://fieldguides.fieldmuseum.org/), claves taxonómicas para llegar a géneros, se tuvo en cuenta los saberes de la comunidad acerca de los nombres comunes de las plantas con el fin de ser corroboradas a través de la Plataforma de Nombres Comunes de Bogotá (https://nombrescomunes.jbb.gov.co/) y la página del Herbario JBB (https://herbario.jbb.gov.co/), también se utilizó la plataforma de Naturalista Colombia como un herramienta de toma de datos en campo con la comunidad (https://colombia.inaturalist.org) y libros de botánica.","Se generó un listado de especies de fauna observada en las zonas de estudio, para la determinación y corroboración taxonómica se tomó en lo posible registro fotográfico para comparación fotográfica con diferentes guías de campo, en esta ocasión la recolección de material entomológico estuvo relacionado con el trabajo de grado de estudiantes de la Universidad de La Salle.","El tiempo de observación osciló entre 4 y 7 horas para cada zona y dependió de las condiciones climáticas del momento. Tambien se utilizó la plataforma de Naturalista Colombia como una herramienta de toma de datos en campo con la comunidad (https://colombia.inaturalist.org), y diferentes libros y guías de campo de diversos grupos taxonómicos.","De la mano con ello, se realizaron salidas semanales por zona de muestreo, con el fin de registrar interacciones bióticas. De ello se obtuvo material multimedia y un listado de especies. Las observaciones se realizaron de forma directa, se seleccionaron puntos de observación en el transcurso de los primeros recorridos en cada una de las zonas de muestreo"]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"spa","purpose":"<p>Identificar la biodiversidad y las interacciones bióticas en cuatro (4) zonas de la Estructura Ecológica Principal de la localidad de Kennedy: Reserva Distrital Humedal El Burro, Reserva Distrital humedal de Techo, Corredor La Magdalena y Huerta Monterrey, a través de un proceso de ciencia participativa.</p>","additionalInfo":"NOMBRE DEL PROYECTO: Aportes al conocimiento de la biodiversidad y sus interacciones bióticas en zonas de importancia para la conservación de la localidad de Kennedy: Humedal El Burro, humedal de Techo, Corredor La Magdalena y Huerta Monterrey, a través de un proceso de ciencia participativa\nID DEL PROYECTO: SC_2023014\nID DEL RECURSO: 001_BIO-RRBB_SC_2023014","pubDate":"2025-07-18T00:00:00.000+00:00","maintenanceUpdateFrequency":"NOT_PLANNED","maintenanceDescription":"JBB-202-2023","license":"http://creativecommons.org/licenses/by-nc/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":["http://rs.gbif.org/terms/1.0/Multimedia"],"modified":"2026-03-24T00:08:42.684+00:00"},"category":["CitizenScience"]},{"key":"247fd45a-0dd7-415d-9f47-699090f39cf5","installationKey":"2a3f6a56-7591-4f05-8c4c-a1bb77aa4ea6","publishingOrganizationKey":"ad2c7028-26fd-49c6-88d2-457c207c387b","doi":"10.15470/7tuxwt","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","shortName":"MINKA_Medusa_a_la_vista","title":"MINKA_Medusa_a_la_vista observatorio de ciencia ciudadana","description":"EN\n\nMINKA Citizen Science Observatory is a community-based platform dedicated to environmental data collection, utilising geolocalized images, sounds and observations uploaded by citizens through a mobile app and website. This platform enables users to collaboratively validate observations, including expert taxonomic identification. Once data meets quality criteria, it achieves &#34;research grade&#34; status and is shared with global infrastructures like the Global Biodiversity Information Facility (GBIF). Recognized as a UN Acceleration Action for SDGs, MINKA contributes significantly to SDGs 11, 14, 15, and 17 by working with diverse stakeholders.\n\nThe Medusa a la vista project, part of MINKA, focuses on documenting and monitoring observations of jellyfish and other stinging pelagic organisms in waters off the coast of Catalonia. This project is notable for the collection of marine data by MINKA platform users, collected near the coastline.\n\nES\n\nEl Observatorio de Ciencia Ciudadana MINKA es una plataforma de base colaborativa dedicada a la recopilación de datos de biodiversidad y ambientales, utilizando imágenes geolocalizadas, sonidos y observaciones compartidas por la ciudadanía a través de una aplicación móvil y un sitio web. Esta plataforma permite a los usuarios validar observaciones de forma colaborativa, incluida la identificación taxonómica de expertos. Una vez que los datos cumplen con los criterios de calidad, alcanzan el estado de &#34;grado de investigación&#34; y se comparten con infraestructuras globales como la Infraestructura Mundial de Datos sobre Biodiversidad (GBIF). MINKA es reconocida como una Acción de Aceleración de las Naciones Unidas para los ODS, contribuyendo a los ODS 11, 14, 15 y 17.\n\n\nEl proyecto Medusa a la vista, integrado en MINKA, se centra en documentar y monitorizar  el registro de observaciones de medusas y otros organismos pelágicos urticantes en aguas de la costa de Catalunya. Este proyecto destaca por la recopilación de datos marinos por parte de los usuarios de la plataforma MINKA tomados cerca de la línea de costa.  \n\nCA\n\nL&#39;Observatori de la Ciència Ciutadana MINKA es una plataforma basada en la comunitat dedicada a la recollida de dades ambientals, utilitzant imatges, sonidos i observacions geolocalitzades carregades pels ciutadans a través d&#39;una aplicació mòbil i un lloc web. Aquesta plataforma permet als usuaris validar de manera col·laborativa les observacions, inclosa la identificació taxonòmica experta. Una vegada que les dades compleixen els criteris de qualitat, assoleixen l&#39;estatus de &#34;qualitat d&#39;investigació&#34; i es comparteixen amb infraestructures globals com el Global Biodiversity Information Facility (GBIF). Reconeguda com una acció d&#39;acceleració de les Nacions Unides per als ODS, MINKA contribueix significativament als ODS 11, 14, 15 i 17 treballant amb diverses parts interessades.\n\nEl projecte Medusa a la vista, integrat a MINKA, se centra a documentar i monitoritzar el registre d&#39;observacions de meduses i altres organismes pelàgics urticants en aigües de la costa de Catalunya. Aquest projecte destaca per la recollida de dades marins per part dels usuaris de la plataforma MINKA presos a prop de la línia de costa.","language":"eng","citation":{"text":"EMBIMOS research group M C, EMBIMOS research group M (2025). MINKA_Medusa_a_la_vista observatorio de ciencia ciudadana. Institut de Ciències del Mar (CSIC). 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This harmonisation will foster collaboration between networks, enhance operational efficiency, and improve data accessibility.\n\nAMRIT will also address Essential Ocean Variables (EOVs) readiness through WP13-15. By examining the pathways from in situ observations to EOVs, the project will identify gaps in blended EOVs (data derived from multiple platforms) and develop best practices to enhance their usability. These improvements will bolster EOOS’s capacity to deliver actionable insights for ocean observation and research."},"samplingDescription":{"studyExtent":"Sampling Area: the coast of Catalonia.","sampling":"Sampling Methodology: The Medusa a la Vista project employs a participatory, unstructured sampling approach, leveraging the power of citizen science to gather data. This method involves the opportunistic collection of observations by volunteers across the coast of Catalonia. Sampling Description: Volunteers participating in the project contribute data through direct observations of jellyfish and other pelagic organisms on the coast of Catalonia. These contributions are critical for creating a comprehensive dataset that reflects the biodiversity and ecological conditions of the area. Data Validation Process: To ensure the reliability and accuracy of the dataset, each observation submitted by volunteers undergoes a rigorous quality control procedure. This validation process is designed to verify the correctness and relevance of the data collected, adhering to established standards for scientific data quality. Further details on the specific criteria and steps involved in the quality control procedure are described in the corresponding field.","qualityControl":"Observations submitted to MINKA can qualify for Research Grade status if they are accompanied by a photo, the date of observation, and geographical coordinates. 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In the case of observations at the gender level, those that are determined as \"cannot be improved\", and have two-thirds parts of the community in favor of the gender, will acquire Research Grade. Research Grade status may be withdrawn if community feedback indicates concerns on several fronts, including the authenticity of the organism's natural setting, the precision of the provided location and date, and adherence to MINKA's ethical standards, such as compliance with its terms of service and copyright laws. It's crucial to understand that data points such as observation dates and locations are primarily sourced from the observers and the collaborative efforts of the community for taxonomic identifications, without direct verification from MINKA's custodians. Therefore, the reliability of such information is not guaranteed. 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Data Sharing: In addition to the collaborative validation process, the project's dataset undergoes a rigorous review against established data quality standards, focusing on taxonomy, geography, and temporal accuracy, before its publication on GBIF. 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In sub-Saharan Africa (SSA), schistosomiasis and fascioliasis are the most prevalent representatives, and are caused by parasitic flatworms of the genera Schistosoma and Fasciola respectively. In SSA, freshwater snails of the genera Biomphalaria and Bulinus act as intermediate hosts for schistosome parasites, while Radix natalensis is the primary vector of fascioliasis (via transmitting Fasciola gigantica). Biomphalaria spp. transmit Schistosoma mansoni, whereas Bulinus spp. transmit both Schistosoma haematobium and Schistosoma intercalatum.</p><p>The ATRAP dataset contains occurrence records of Biomphalaria, Bulinus, and Radix in the Lake Albert region of western Uganda and the Kimpese region of western Democratic Republic of the Congo (DRC) between March 2020 and April 2023. The records were collected by a trained citizen science network in both communities, which monitored snail populations on a weekly basis at fixed water body sites. For each sampling, the records were uploaded to a KoboToolbox server. Each record present in the database was validated by experts based on attached field photographs submitted by a citizen scientist. The taxonomic identification was done to the genus level, due to the morphological plasticity that exists among species within each genus.</p>","language":"eng","logoUrl":"https://biocase.africamuseum.be/ipt_rmca/logo.do?r=atrap_snail_hosts","citation":{"text":"Valderrama Bhraunxs N, Bonifacio L, Huyse T (2025). The ATRAP project: citizens scientists reporting snail intermediate host occurrence in Uganda and the Democratic Republic of the Congo. Version 1.6. Royal Museum for Central Africa, Belgium. Occurrence dataset https://doi.org/10.15468/t2vtd5 accessed via GBIF.org on 2026-04-28.","citationProvidedBySource":false},"contactsCitation":[{"key":6197886,"abbreviatedName":"Valderrama Bhraunxs N","firstName":"Noelia","lastName":"Valderrama Bhraunxs","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":["https://orcid.org/0000-0002-1804-6715"]},{"key":6197887,"abbreviatedName":"Bonifacio L","firstName":"Larissa","lastName":"Bonifacio","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":["https://orcid.org/0009-0007-3797-7906"]},{"key":6197888,"abbreviatedName":"Huyse 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dataset comprises freshwater snails (Gastropoda: Hygrophila) which were identified to the genus level.","coverages":[{"scientificName":"Biomphalaria","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Bulinus","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Radix","rank":{"verbatim":"genus","interpreted":"GENUS"}}]}],"geographicCoverages":[{"description":"The study area in Uganda is bounded by latitudes 0.90918882 to 1.11597173 and longitudes 30.51644939 to 30.83790609.\n\nThe study area in the DRC is bounded by latitudes -5.723556 to -5.332967 and longitudes 14.23025 to 14.65933.","boundingBox":{"minLatitude":-5.724,"maxLatitude":1.116,"minLongitude":14.2,"maxLongitude":30.52,"globalCoverage":false}}],"temporalCoverages":[{"@type":"range","start":"2020-03-01T00:00:00.000+00:00","end":"2023-04-28T00:00:00.000+00:00"}],"keywordCollections":[{"thesaurus":"GBIF Dataset Type Vocabulary: 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(ATRAP)","contacts":[{"type":"POINT_OF_CONTACT","primary":false,"userId":["https://orcid.org/0000-0001-8164-9757"],"firstName":"Tine","lastName":"Huyse","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"ORIGINATOR","primary":false,"userId":["https://orcid.org/0000-0002-1804-6715"],"firstName":"Noelia","lastName":"Valderrama","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"PROCESSOR","primary":false,"userId":["https://orcid.org/0009-0007-3797-7906"],"firstName":"Larissa","lastName":"Bonifacio","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"CUSTODIAN_STEWARD","primary":false,"userId":["https://orcid.org/0000-0002-0626-538X"],"firstName":"Franck","lastName":"Theeten","position":[],"email":[],"phone":[],"homepage":[],"address":[]}],"funding":"This research was financed by the Action Towards Reducing Aquatic snail-borne Parasitic diseases (ATRAP) project of the Development Cooperation program of the Royal Museum for Central Africa with the support of the Belgian Directorate General Development Cooperation and Humanitarian Aid. Noelia Valderrama-Bhraunxs is a fellow of the Research Foundation Flanders (FWO) (Fellowships 11L3223N, 11L3225N). The funders had no role in study design, data collection and analysis, decision to publish, or manuscript preparation.","awards":[],"studyAreaDescription":"Data collection for the Ugandan citizen science network took place in the Lake Albert region, an area characterized by significant altitudinal variation, ranging from 620 meters in the lowlands to 1400 meters in the upland areas shaped by the Great Rift Valley. The lower-lying regions near the lake are remote and difficult to reach by road, presenting logistical challenges for fieldwork. The sampling sites captured a variety of hydrological conditions and were classified into four main types: springs, streams, wetlands, and lake shores.\n\nIn the DRC, the citizen science network operated in the Kimpese region of Kongo Central province. In contrast to the varied topography of the Ugandan study area, this region is relatively homogeneous, characterized by plateaus and rolling hills at elevations ranging from approximately 250 to 400 meters. The Lukunga River and its tributaries form an extensive hydrological network, serving as essential water sources for irrigation during the rainy season. Most of the sampling locations corresponded to streams derived from the Lukunga River.","designDescription":"In both study areas, sampling locations were identified through a preliminary survey, prioritizing sites where community members frequently engaged in water-related activities such as swimming, washing, water collection, and open defecation/urination, practices that increase the risk of snail-borne disease transmission. \nThe study included locations where intermediate host snails were present, as areas where they were absent during initial field assessments.\n\nCitizen scientists conducted standardized snail sampling and submitted reports through KoboCollect documenting freshwater snails that serve as intermediate hosts for Schistosoma and Fasciola parasites. Each survey lasted approximately 30 minutes, during which the citizen scientists used a hand-held scoop net with a two-meter metallic handle, while wearing protective gear. Snails were identified and sorted based on morphological characteristics learned during training, with counts and photographs recorded for each specimen. Snails were categorized into the genera Biomphalaria, Bulinus, and Radix, and a ‘pool’ category was used for all other species. All findings were uploaded to a central server for researcher access and verification.","relatedProjects":[],"abstract":"The ATRAP project was established to address the lack of fine-scale data in regions with a high prevalence of schistosomiasis, specifically in rural areas of Uganda and the DRC. This citizen science-based project aimed to monitor snail populations and generate distribution data to guide future targeted control interventions. Studies have shown that citizen science (CS) projects with structured data collection protocols can enhance the scope of monitoring, produce high-quality actionable data, and increase local community engagement. To achieve this, ATRAP recruited and trained 25 citizen scientists in each of the two countries, Uganda and the DRC, to monitor snail intermediate host populations weekly between 2020 and 2023. This project was a collaboration between ATRAP, Mbarara University of Science and Technology in Uganda, and the University of Kinshasa in the DRC."},"samplingDescription":{"studyExtent":"In Uganda, the study area was located around the area of Lake Albert, geographically bounded by latitudes 0.90918882 to 1.11597173 and longitudes 30.51644939 to 30.83790609.\nIn the DRC, the study area was located within the Kimpese region in the Kongo Central, geographically bounded by latitudes -5.723556 to -5.332967 and longitudes 14.23025 to 14.65933. \nThe temporal coverage of the dataset is from 1 March 2020 to 30 April 2023. Water body sites within these two study areas were sampled for freshwater snails on an approximately weekly basis, depending on the initiative of the citizen scientists.","sampling":"Citizen scientists conducted standardized snail sampling at fixed water body sites, approximately once every week. In Uganda, where site types were more heterogeneous, a 10-meter radius sampling protocol was recommended at each site. In the DRC, citizen scientists collected snails 5 meters upstream and downstream of the contact point. For streams less than 3 meters wide and 50 cm deep, sampling was conducted on both sides of the stream. \nDuring sampling, citizen scientists were equipped with protective gear (latex gloves and gumboots), a hand-held scoop net with a two-meter metallic handle, and a provided smartphone for documenting the sampling event and their observations. Each sampling lasted approximately 30 minutes. After sampling, snails were identified and sorted based on morphological characteristics learned during training. They were categorized into the genera Biomphalaria, Bulinus, and Radix, and a ‘pool’ category was used for all other taxa. Counts and photographs were recorded for each specimen.\nCitizen scientists submitted reports through KoboCollect, containing their observations of freshwater snails as well as the date, time, GPS location, and duration of sampling. All findings were uploaded to a central server for researcher access and verification.","qualityControl":"The ATRAP network is formed by several experts, including malacologists and biologists with training in freshwater snail identification. For each record, one expert reviewed the attached field photographs to verify genus identification and flag possible misidentifications. A semi-automatic validation protocol was also used to detect reporting issues for each record, such as invalid dates or low GPS accuracy (more than 5m). The validated reports were saved to a CSV file for subsequent data processing. \nAdditionally, CSs received continuous feedback and took part in annual refresher training sessions to improve the accuracy of their data.","methodSteps":["A citizen scientist, identified in the dataset by a unique code, travels to their designated water site/s with their sampling equipment: a hand-held scoop net, protective gear (latex gloves and gumboots), and smartphone. The citizen scientist records the date, time, GPS location, and other environment-related variables in the KoboCollect app on their smartphone.","The citizen scientist conducts sampling, scooping in the water for approximately 30 minutes in a 10-meter radius (for Uganda) or 5 meters upstream and 5 meters downstream (for the DRC) from the fixed water site. The start time and end time of sampling are recorded.","Following sampling, the citizen scientist identifies and separates Biomphalaria, Bulinus, and Radix (if present) from collected freshwater snails. For each taxon of interest present, the citizen scientist provides a count and attaches a photograph of all snails found to the sampling report. The report is uploaded to the ATRAP KoboToolbox server.","Each photograph attached to the report is evaluated by an ATRAP expert to verify the accuracy of the taxon reported by the citizen scientists. Possible misidentifications (including taxonomic uncertainty from e.g. poor image quality) are flagged. Biomphalaria, Bulinus, and Radix reports are independently verified to ensure that errors in one genus do not affect the validity of other records. A semi-automatic validation protocol also flags potential metadata issues for each report, such as invalid dates or low GPS accuracy (more than 5 m).","Validated reports are saved to a CSV file for further data processing."]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"eng","acknowledgements":"<p>We gratefully acknowledge the contributions of Julius Tumusiime, Germain Kapour, and Daisy Namirembe for their efforts in surveillance and coordination of the citizen science network. In Uganda, Casim Umba-Tolo provided coordination, supervision, project administration, and funding acquisition, while Grace Kagoro-Rugunda contributed through supervision and project administration. In the Democratic Republic of the Congo (DRC), Patrick Mitashi-Mulopo supported the project through project administration, supervision, and funding acquisition, and Joule Mandinga played a central role in coordination, supervision, project administration, and funding acquisition. Liesbet Jacobs supported the project’s conceptualization and contributed through supervision, validation, and funding acquisition. We sincerely thank the citizen scientists whose enthusiasm, local knowledge, and dedication were instrumental to the success of this study. We also extend our appreciation to Franck Theeten and Larissa Smirnova for their invaluable assistance in making the data available through the Integrated Publishing Toolkit of the Royal Museum for Central Africa.</p>","pubDate":"2025-08-04T00:00:00.000+00:00","maintenanceUpdateFrequency":"AS_NEEDED","maintenanceDescription":"","license":"http://creativecommons.org/publicdomain/zero/1.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":[],"modified":"2025-12-12T15:03:34.452+00:00"},"category":["CitizenScience"]},{"key":"8df3aba5-7d10-47be-81d9-7720263f3c45","installationKey":"73ebc470-17bd-4130-a880-1be5cfb16e4d","publishingOrganizationKey":"bf3fca4e-c321-41e1-bd7f-8dd92360ade1","doi":"10.15472/t4gvqp","version":"1.1","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","title":"Monitoreo participativo de la salud de los arrecifes coralinos, una propuesta de adaptación del protocolo Reef Check Pacífico colombiano","description":"<p>Se realizó un monitoreo de salud coralina usando la metodología Reef Check en dos áreas con mayor cobertura de coral: Chuzudo y Piedra Roñosa, como resultado se obtuvo este conjunto de datos que consta de 124 registros biológicos.</p><p>Durante la Expedición Pacífico 2023, Corales de Paz tuvo la oportunidad de poner a prueba la adaptación del protocolo de monitoreo para la región Pacífico, haciendo reconocimiento y monitoreo en varios puntos del Golfo de Tribugá. Los puntos de monitoreo escogidos para la certificación de la primera cohorte de Reef Check EcoDivers del Pacífico colombiano se ubican en Piedra Roñosa (al sur del Golfo de Tribugá), debido a la presencia de marea roja en la zona norte. Se contó con la participación de cuatro miembros de la comunidad, escogidos por el Consejo Comunitario Mayor Los Riscales, quienes completaron y aprobaron los módulos teóricos y prácticos del curso Reef Check EcoDiver, culminando en su certificación como EcoDivers para el Pacífico Este.</p><p>Como parte final de la capacitación, los nuevos EcoDivers del Pacífico Este, junto al staff de Corales de Paz, realizaron un monitoreo participativo siguiendo el protocolo establecido por Reef Check para la recolección de datos de peces, invertebrados, enfermedades e impactos y sustrato. Este proyecto permitió certificar la primera cohorte de Reef Check EcoDivers bajo el protocolo de monitoreo del Pacífico, fortaleciendo la capacidad instalada y la confianza en las comunidades en el trabajo de Corales de Paz. Este trabajo permitirá la continuación de este programa de ciencia ciudadana y turismo científico en la región, abriendo las puertas a nuevas opciones para generar ingresos locales.</p>","language":"spa","logoUrl":"https://gitlab.com/sib-colombia/logos/-/raw/main/socio-SiB-cdp.png","citation":{"text":"Caicedo González A, Alegría Ortega A, Cotrino Salcedo L, Mariño Ramírez C, Lorenzo Cajiao D, Roger Reyes A, Antonio Lloreda L, Morante D C, Duarte Fajardo M A, Sanchez Posada C (2025). Monitoreo participativo de la salud de los arrecifes coralinos, una propuesta de adaptación del protocolo Reef Check Pacífico colombiano. Version 1.1. Corales de Paz. Occurrence dataset https://doi.org/10.15472/t4gvqp accessed via GBIF.org on 2026-04-28.","identifier":"https://doi.org/10.15472/t4gvqp","citationProvidedBySource":false},"contactsCitation":[{"key":6100863,"abbreviatedName":"Caicedo González A","firstName":"Andrea","lastName":"Caicedo González","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":[]},{"key":6100864,"abbreviatedName":"Alegría Ortega A","firstName":"Angela","lastName":"Alegría Ortega","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":[]},{"key":6100865,"abbreviatedName":"Cotrino Salcedo L","firstName":"Laura","lastName":"Cotrino Salcedo","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":[]},{"key":6100866,"abbreviatedName":"Mariño Ramírez C","firstName":"Camila","lastName":"Mariño Ramírez","roles":["ORIGINATOR","METADATA_AUTHOR"],"userId":[]},{"key":6100867,"abbreviatedName":"Lorenzo Cajiao D","firstName":"Dairo","lastName":"Lorenzo Cajiao","roles":["ORIGINATOR"],"userId":[]},{"key":6100868,"abbreviatedName":"Roger Reyes 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los 12 grupos de peces seleccionados como especies indicadoras para la región del Pacífico colombiano, fue posible registrar la presencia de nueve de ellos en Chuzudo, mientras que en Piedra Roñosa se registraron siete de las 12. Peces loro, halcón (Cirrhitus rivulatus) y morenas fueron registradas únicamente en Chuzudo, mientras que el ídolo Moro (Zanclus cornutus) fue registrado únicamente en Piedra Roñosa. Sin embargo, especies como la vieja de la piedra (Bodianus diplotaenia), que según miembros de la comunidad y los mismos participantes es muy común de ver en la zona, no se registró durante ninguno de los monitoreos realizados en la Expedición. En el caso de Piedra Roñosa, el 47% de los peces registrados fueron Ángel de Cortez (Pomacanthus zonipectus), seguido por pargos, mariposas, meros (de talla mayor a los 30 cm) y roncos. En el caso de Chuzudo, no hay una clara dominancia de algún grupo de peces, y las especies dominantes corresponden a mariposas, pargos y meros.","coverages":[{"scientificName":"Cirrhitus","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Bodianus","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Pomacanthus","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Zanclus","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Mobula","rank":{"verbatim":"genus","interpreted":"GENUS"}},{"scientificName":"Carijoa","rank":{"verbatim":"genus","interpreted":"GENUS"}}]}],"geographicCoverages":[{"description":"Golfo De Tribugá - Cabo Corrientes.","boundingBox":{"minLatitude":5.545,"maxLatitude":5.846,"minLongitude":-77.959,"maxLongitude":-77.448,"globalCoverage":false}}],"temporalCoverages":[{"@type":"range","start":"2023-03-01T00:00:00.000+00:00","end":"2023-03-30T00:00:00.000+00:00"}],"keywordCollections":[{"thesaurus":"N/A","keywords":["Mobula","Carijoa","Eucidaris","Diadema","Zanclus"]},{"thesaurus":"GBIF Dataset Type Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_type_2015-07-10.xml","keywords":["Occurrence"]},{"thesaurus":"GBIF Dataset Subtype Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_subtype.xml","keywords":["Observation"]}],"project":{"title":"Propuesta de adaptación del protocolo Reef Check Pacífico colombiano para el monitoreo participativo de la salud de los arrecifes coralino","identifier":"Expedición Científica Pacífico 2023 Golfo de Tribugá - Cabo Corrientes","funding":"Programa Colombia Bio del Ministerio de Ciencia, Tecnología e Innovación • Armada de Colombia • Dirección General Marítima • Secretaría Ejecutiva de la Comisión Colombiana del Océano •  Corporación Centro de Excelencia en Ciencias del Mar • Contrapartida de las entidades, instituciones y fundaciones participantes","awards":[],"studyAreaDescription":"El Golfo de Tribugá, ubicado en la ecoregión Pacífico Norte, departamento del Chocó, posee una amplia gama de ecosistemas estratégicos de los cuales dependen las comunidades locales. Uno de los principales hábitats marino-costeros que resaltan en este territorio son los Bosques de Manglar con una extensión aproximada de 2.500 hectáreas, que por sus características geográficas y ambientales presenta una de las densidades poblacionales más altas de la región para este ecosistema (Mejía-Rentería 2018; Velandia & Díaz 2016). Otro de los hábitats marinos más representativos del Pacífico colombiano son los Arrecifes Rocosos, debido a que ofrecen un sustrato idóneo para el asentamiento de organismos bentónicos sésiles y un refugio para numerosas especies de invertebrados vágiles, que a su vez sustentan una amplia diversidad de especies de peces fundamentales para el mantenimiento de la red trófica marina y, por tanto, para el sostenimiento de las comunidades locales (Chasqui et al. 2020). Estos ecosistemas se encuentran distribuidos principalmente en el norte del Pacífico chocuano, siendo el Golfo de Tribugá y Cabo Corrientes una de las áreas con mayor cantidad de estas formaciones rocosas, dada la particular actividad tectónica de la zona (Chasqui et al. 2020; Díaz et al. 2016).","designDescription":"Se realizó un monitoreo de salud coralina usando la metodología Reef Check en dos áreas con mayor cobertura de coral: Chuzudo y Piedra Roñosa. El muestreo se hizo a lo largo de un transecto de 100 m, dividido en cuatro segmentos de 20 m con espacios de 5 m sin conteo. Para peces, se utilizó un túnel de 5x5 m, anotando especies observadas mientras se nadaba en línea recta. Para invertebrados, enfermedades e impactos, se recorrió el transecto en forma de S, registrando especímenes y condiciones en 2,5 m a cada lado. El sustrato se muestreó cada 50 cm usando el método de punto-intercepto.","relatedProjects":[],"abstract":"Durante la Expedición Pacífico 2023, Corales de Paz tuvo la oportunidad de poner a prueba la adaptación del protocolo de monitoreo para la región Pacífico, haciendo reconocimiento y monitoreo en varios puntos del Golfo de Tribugá. Los puntos de monitoreo escogidos para la certificación de la primera cohorte de Reef Check EcoDivers del Pacífico colombiano se ubican en Piedra Roñosa (al sur del Golfo de Tribugá), debido a la presencia de marea roja en la zona norte."},"samplingDescription":{"studyExtent":"El Golfo de Tribugá, ubicado en la ecoregión Pacífico Norte, departamento del Chocó, posee una amplia gama de ecosistemas estratégicos de los cuales dependen las comunidades locales. Uno de los principales hábitats marino-costeros que resaltan en este territorio son los Bosques de Manglar con una extensión aproximada de 2.500 hectáreas, que por sus características geográficas y ambientales presenta una de las densidades poblacionales más altas de la región para este ecosistema (Mejía-Rentería 2018; Velandia & Díaz 2016). Otro de los hábitats marinos más representativos del Pacífico colombiano son los Arrecifes Rocosos, debido a que ofrecen un sustrato idóneo para el asentamiento de organismos bentónicos sésiles y un refugio para numerosas especies de invertebrados vágiles, que a su vez sustentan una amplia diversidad de especies de peces fundamentales para el mantenimiento de la red trófica marina y, por tanto, para el sostenimiento de las comunidades locales (Chasqui et al. 2020). Estos ecosistemas se encuentran distribuidos principalmente en el norte del Pacífico chocuano, siendo el Golfo de Tribugá y Cabo Corrientes una de las áreas con mayor cantidad de estas formaciones rocosas, dada la particular actividad tectónica de la zona (Chasqui et al. 2020; Díaz et al. 2016).  \n\nLas características y contextos ambientales y sociales que convergen en el Golfo de Tribugá establecen un panorama complejo para la gestión integral del territorio marino-costero, ya que el desarrollo antrópico ha generado conflictos ambientales, producto de la compleja relación entre los componentes biogeográficos y el desarrollo económico de la región (Romero 2009). El escaso entendimiento de las dinámicas de ordenamiento territorial, por parte de la institucionalidad estatal, ha impuesto un modelo de desarrollo desalineado con el contexto ambiental y social (IIAP 2013), ya que, en términos generales, se desconocen los procesos que se dan en diferentes escalas de organización biológica, lo cual imposibilita la incorporación de las actividades antrópicas como parte de los sistemas naturales. Por esta razón, en el Golfo de Tribugá se han implementado diversos mecanismos de protección a través de los instrumentos del Sistema Nacional de Áreas Protegidas (i.e. Parque Nacional Natural Utría y Distrito Regional de Manejo Integrado Golfo de Tribugá). Adicionalmente, durante los últimos 10 años, el Instituto de Investigaciones Ambientales del Pacífico-IIAP ha realizado un trabajo de articulación con los Consejos Comunitarios de la Comunidad Negra locales para la consolidación de la primera Reserva de Biósfera del Pacífico colombiano en este territorio. Si bien se han realizado importantes esfuerzos para estructurar los lineamientos y directrices para su desarrollo sostenible, el conocimiento sobre los ecosistemas marinos y costeros presentes aún permanece rezagado, dada la dimensión y complejidad territorial, lo cual fomenta los vacíos de información existentes.","sampling":"Monitoreo de estado de salud de los arrecifes de coral y validación de los materiales pedagógicos.\nSe realizó un monitoreo bajo la metodología Reef Check en el área donde se evidenció un mayor desarrollo de la cobertura coralina, estos puntos son reconocidos como Chuzudo y Piedra Roñosa. El monitoreo se realizó a la largo de un transecto de 100 m, compuesto de 4 segmentos de 20 m con franjas intermedias de 5 m donde no se realiza ningún conteo de los componentes. Para el componente de peces se visualiza un túnel de 5x5 m sobre el transecto y se nada en línea recta anotando las especies de peces definidas dentro del protocolo. Para invertebrados, enfermedades e impactos se nada en forma de S, a lo largo del transecto, con 2,5 m a cada lado del transecto, anotando los invertebrados seleccionados, así como las enfermedades e impactos observados. Por último, para el componente de sustrato se hace un muestreo punto-intercepto cada 50 cm, anotando la categoría, justo debajo del punto de la cinta métrica.","methodSteps":["Se seleccionaron dos áreas con mayor cobertura coralina: Chuzudo y Piedra Roñosa.","Se estableció un transecto de 100 m, dividido en 4 segmentos de 20 m y franjas intermedias de 5 m.","Para los peces, se utilizó un túnel de 5x5 m, nadando en línea recta y registrando las especies observadas.","Para invertebrados, enfermedades e impactos, se nadó en forma de S a lo largo del transecto, registrando lo observado en 2,5 m a cada lado.","Se realizó un muestreo punto-intercepto cada 50 cm, registrando el sustrato bajo cada punto de la cinta métrica."]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"spa","pubDate":"2025-05-13T00:00:00.000+00:00","maintenanceUpdateFrequency":"AS_NEEDED","maintenanceDescription":"","license":"http://creativecommons.org/licenses/by-nc/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":[],"modified":"2026-03-24T01:00:41.658+00:00"},"category":["CitizenScience"]},{"key":"4bc90c76-c12f-4d2f-a422-d7bca2a7dbe1","installationKey":"791e3715-7452-4dd0-a906-db21a3852427","publishingOrganizationKey":"0624806f-42f4-47b6-9b9a-1fdaf88590b5","doi":"10.15468/hkgdaa","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","shortName":"BioBlitz of University Rennes 2","title":"BioBlitz biodiversity data of Unversity Rennes 2","description":"This dataset combines a wide variety of biodiversity data from different BioBlitz events on the campus of Rennes of University Rennes 2","language":"eng","citation":{"text":"CLEMENT J (2025). 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spaces in highly urbanized campus area","designDescription":"Using a participative approach, sampling involves established research protocols and standardized citizen science protocols as well as opportunistic observations.","relatedProjects":[],"abstract":"A collaborative project of higher education institution to monitore biodivesity on all campuses at Rennes with a participative approach."},"samplingDescription":{"studyExtent":"The various campus habitats were mapped  and sampling zones within each campus were designated.\nSampling occurs during each Bioblitz event, nevertheless during each Bioblitz event the sampling frequency is random.","sampling":"Standardized citizen science protocols, classical research methods and opportunistic observations were used for sampling.","qualityControl":"Non-expert participants in the Bioblitz were accompanied by naturalists and researchers. Collating the biodiversity data was implemented  or supervised by the experts.","methodSteps":["The first step was the observation in the field, collecting specimens and identifying species using microscopes and field guides. The second step was collecting data by the experts. And the third step was collating, verifying and formating the data in the field."]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"fra","purpose":"The aim of this BioBlitz is to survey the plant and animal species present on our campuses. The results will enable us to gain a better understanding about urban biodiversity to adapt management practices of green spaces and development projects on the campuses. It will also serve as a basis for monitoring of biodiversity changes over the time and for evaluation impact of management actions undertaken.","introduction":"The ecologial management and sustainability of natural areas are strongly influenced by social, economic and ecologic dynamics, and these areas are therefore considered socio-ecosystems (McGinnis and OStrom 2014). Particulary in cities, the management of green spaces are strongly linked to the needs and activities of the human population. There are numerous initiatives and political strategies to promote urban biodiversity (e.g.green and blue grid, urban agriculture, Shwartz et al. 2013). Several functions of urban biodiversity are recognized as beneficial to the lives of city habitants( e.g. air quality, urban climate, well-being[Chiesurra 2004, Pickett et al. 2011]). The question of how to manage green spaces to promote biodiversity that fits in with the objectives of sustainable development has been adressed by the campuses within the city of Rennes. The research institutions of Rennes collaborate in a common project to monitor urban biodiversity and the impact of management practices. Biodiversity on the Rennes campuses is a sustainable development issue and the institutions aim to involve users in the process of studying biodiversity and implementing a management strategy of green spaces that favor biodiversity on campus.","gettingStarted":"The occurrences of each Bioblitz are collected by observation zone. Mapping and protocols are specific to each campus and its habitats.Naturalists specialised in different taxa provide a global view of campus biodiversity at a given time.The recurrence of the Bioblitzes over time allows for monitoring the evolution of flora and fauna according to campus management and to the impact of climate change.","acknowledgements":"We acknowledge the funders of this project : Institut Agro Rennes-Angers, Université de Rennes, Université Rennes 2. Special thanks to all the participants of the BioBlitz and particularly the naturalists Mathilde Dano, Barbara Mai, Dominique Delarue, Julie Coudreuse, Floriane Flacher-Geslin, Pascal Peuch, Agnès Schermann, Dominique Vallet, Valentin Hamon, Jacques Le Letty, Joel Esnault, Robert Forsyth, Valentin Cabon, Brice Bensoussan, Yann Laurent, Arnaud Le Houedec, Mickaël Ouisse, Loïs Morel, Esteban Vilboux, Marjorie Fangain, Timothée Cantard, Benoit Maubé, Daniel Chicouene, Nicolas Le Maréchal. A special acknowledgement for the organisation of the Bioblitz 2023 on the campus of Institut Agro Rennes Angers to : Maxence Rocoplo, Bapstiste Bongibault, Marine Scellier, Lucile Ansali, Lucie Scheuir, Lolita Julien-Pannie, Chiara Mulloni, Lou Thevenon, Manuel Plantagenest and Sylvie Fortin","pubDate":"2025-05-12T00:00:00.000+00:00","maintenanceUpdateFrequency":"AS_NEEDED","maintenanceDescription":"New data will be implemented when more BioBlitz data becomes available and after future BioBlitz events","license":"http://creativecommons.org/licenses/by-nc/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":[],"modified":"2025-07-02T11:12:46.701+00:00"},"category":["CitizenScience"]},{"key":"06d577cf-fe24-4447-b956-02f9ba4dbd85","installationKey":"791e3715-7452-4dd0-a906-db21a3852427","publishingOrganizationKey":"150925a3-4423-4470-8bdb-30680b0e751b","doi":"10.15468/k2hyrs","version":"1.2","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","shortName":"BioBlitz of Institut Agro Rennes-Angers","title":"BioBlitz biodiversity data of campus of Institut Agro Rennes-Angers","description":"This dataset combines a wide variety of biodiversity data from different BioBlitz events on the campus of Rennes of the Institut Agro Rennes-Angers","language":"eng","citation":{"text":"Boulier-Monthéan N, Le Coeur D, Clement J, Nicolai A, Bongibault B, Rocoplo M, Scellier M (2025). BioBlitz biodiversity data of campus of Institut Agro Rennes-Angers. Version 1.2. Institut Agro Rennes-Angers. 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Collating the biodiversity data was implemented  or supervised by the experts","methodSteps":["The first step was the observation in the field, collecting specimens and identifying species using microscopes and field guides. The second step was collecting data by the experts. And the third step was collating, verifying and formating the data in the field"]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"fra","purpose":"<p>The aim of this BioBlitz is to survey the plant and animal species present on our campuses. The results will enable us to gain a better understanding about urban biodiversity to adapt management practices of green spaces and development projects on the campuses. It will also serve as a basis for monitoring of biodiversity changes over the time and for evaluation impact of management actions undertaken</p>","introduction":"The ecologial management and sustainability of natural areas are strongly influenced by social, economic and ecologic dynamics, and these areas are therefore considered socio-ecosystems (McGinnis and OStrom 2014). Particulary in cities, the management of green spaces are strongly linked to the needs and activities of the human population. There are numerous initiatives and political strategies to promote urban biodiversity (e.g.green and blue grid, urban agriculture, Shwartz et al. 2013). Several functions of urban biodiversity are recognized as beneficial to the lives of city habitants( e.g. air quality, urban climate, well-being[Chiesurra 2004, Pickett et al. 2011]). The question of how to manage green spaces to promote biodiversity that fits in with the objectives of sustainable development has been adressed by the campuses within the city of Rennes. The research institutions of Rennes collaborate in a common project to monitor urban biodiversity and the impact of management practices. Biodiversity on the Rennes campuses is a sustainable development issue and the institutions aim to involve users in the process of studying biodiversity and implementing a management strategy of green spaces that favor biodiversity on campus","gettingStarted":"The occurrences of each Bioblitz are collected by observation zone. Mapping and protocols are specific to each campus and its habitats.Naturalists specialised in different taxa provide a global view of campus biodiversity at a given time.The recurrence of the Bioblitzes over time allows for monitoring the evolution of flora and fauna according to campus management and to the impact of climate change.","acknowledgements":"We acknowledge the funders of this project : Institut Agro Rennes-Angers, Université de Rennes, Université Rennes 2. Special thanks to all the participants of the BioBlitz and particularly the naturalists Mathilde Dano, Barbara Mai, Dominique Delarue, Julie Coudreuse, Floriane Flacher-Geslin, Pascal Peuch, Agnès Schermann, Dominique Vallet, Valentin Hamon, Jacques Le Letty, Joel Esnault, Robert Forsyth, Valentin Cabon, Brice Bensoussan, Yann Laurent, Arnaud Le Houedec, Mickaël Ouisse, Loïs Morel, Esteban Vilboux, Marjorie Fangain, Timothée Cantard, Benoit Maubé, Daniel Chicouene, Nicolas Le Maréchal. A special acknowledgement for the organisation of the Bioblitz 2023 on the campus of Institut Agro Rennes Angers to : Maxence Rocoplo, Bapstiste Bongibault, Marine Scellier, Lucile Ansali, Lucie Scheuir, Lolita Julien-Pannie, Chiara Mulloni, Lou Thevenon, Manuel Plantagenest and Sylvie Fortin","pubDate":"2025-03-11T00:00:00.000+00:00","maintenanceUpdateFrequency":"AS_NEEDED","maintenanceDescription":"New data will be implemented when more BioBlitz data becomes available and after future BioBlitz events","license":"http://creativecommons.org/licenses/by-nc/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":[],"modified":"2025-07-02T11:10:55.195+00:00"},"category":["CitizenScience"]},{"key":"217c4f1d-7f25-477c-bc52-9e070d3fc295","installationKey":"791e3715-7452-4dd0-a906-db21a3852427","publishingOrganizationKey":"957ac1e0-0765-4004-bc68-20f3534211b2","doi":"10.15468/j9xmkv","version":"1.2","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","shortName":"BioBlitz on city campuses of University of Rennes","title":"BioBlitz biodiversity data of all city campuses of University of Rennes","description":"This dataset combines a wide variety of biodiversity data from different BioBlitz events on the different campus in the city of Rennes that belong to the University of Rennes.","language":"eng","citation":{"text":"Nicolai A, Le  Coeur D, Clément J, Boulier-Monthean N, Briand V (2025). 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geographical coverage of the data encompasses the different campus of the University of Rennes located in the city of Rennes (Campus Santé Villejean, EHESP, Campus Beaulieu, Campus Centre, Campus Ker Lann).","boundingBox":{"minLatitude":48.039,"maxLatitude":48.127,"minLongitude":-1.756,"maxLongitude":-1.617,"globalCoverage":false}}],"temporalCoverages":[{"@type":"range","start":"2023-05-12T00:00:00.000+00:00","end":"2023-05-14T00:00:00.000+00:00"}],"keywordCollections":[{"thesaurus":"GBIF Dataset Type Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_type_2015-07-10.xml","keywords":["Occurrence"]},{"thesaurus":"GBIF Dataset Subtype Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_subtype.xml","keywords":["Observation"]}],"project":{"title":"BioBlitz on Rennes campuses","identifier":"BioBlitz Rennes Campus ","contacts":[{"type":"ORIGINATOR","primary":false,"userId":[],"firstName":"Julie","lastName":"Clément","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"ORIGINATOR","primary":false,"userId":[],"firstName":"Nathalie","lastName":"Boulier-Monthean","position":[],"email":[],"phone":[],"homepage":[],"address":[]}],"funding":"All involved higher education institutions contribute to funding.","awards":[],"studyAreaDescription":"Green spaces in highly urbanized campus areas.","designDescription":"Using a participative approach, sampling involves established research protocols and standardized citizen science protocols as well as opportunistic observations.","relatedProjects":[],"abstract":"A collaborative project of higher education institutions to monitor biodiversity on all campuses at Rennes with a participative approach."},"samplingDescription":{"studyExtent":"The various campus habitats were mapped and sampling zones within each campus were designated. Sampling occurs during each BioBlitz event, nevertheless during each BioBlitz event the sampling frequency is random.","sampling":"Standardized citizen science protocols, classical research methods and opportunistic observations were used for sampling.","qualityControl":"Non-expert participants in the BioBlitz were accompanied by naturalists and researchers. Collating the biodiversity data was implemented or supervised by the experts.","methodSteps":["The first step was the observation in the field, collecting specimens and identifying species using micrsoscopes and field guides. The second step was collecting data by the experts. And the third step was collating, verifying and formatting the data in the file."]},"countryCoverage":[],"collections":[],"dataDescriptions":[],"dataLanguage":"fra","purpose":"The aim of this BioBlitz is to survey the plant and animal species present on our campuses. The results will enable us to gain a better understanding about urban biodiversity to adapt management practices of green spaces and development projects on the campusses. It will also serve as a basis for monitoring of biodiversity changes over time and for evaluationg impact of management actions undertaken.","introduction":"<p>The ecological management and sustainability of natural areas are strongly influenced by social, economic and ecological dynamics, and these areas are therefore considered socio-ecosystems (McGinnis and Ostrom 2014). Particularly in cities, the management of green spaces are strongly linked to the needs and activities of the human population. There are numerous initiatives and political strategies to promote urban biodiversity (e.g. green and blue grid, urban agriculture, Shwartz et al. 2013). Several functions of urban biodiversity are recognized as beneficial to the lives of city habitants (e.g. air quality, urban climate, well-being [Chiesura 2004, Pickett et al. 2011]). The question of how to manage green spaces to promote biodiversity that fits in with the objectives of sustainable development has been adressed by the campuses within the city of Rennes. The research institutions of Rennes collaborate in a common project to monitor urban biodiversity and the impact of management practices. Biodiversity on the Rennes campuses is a sustainable development issue and the instiutions aim to involve users in the process of studying biodiversity and implementing a management strategy of green spaces that favor biodiversity on campus.</p>","gettingStarted":"<p>The occurrences of each BioBlitz are collected by observation zone. Mapping and protocols are specific to each campus and its habitats. Naturalists specialized in different taxonomic groups provide a global view of campus biodiversity at a given time. The recurrence of the BioBlitzes over time allows for monitoring the evolution of flora and fauna accrding to campus management and to the impact of climate change. </p>","acknowledgements":"We acknowledge the funders of this project: Institut Agro Rennes-Angers, Université de Rennes and Université Rennes 2. Special thanks to all the participants of the BioBlitz and particularly the naturalists Mathilde Dano, Barbara Mai, Dominique Delarue, Julie Coudreuse, Floriane Flacher-Geslin, Pascal Peuch, Agnès Schermann, Dominique Valet, Valentin Hamon, Jacques le Letty, Joël Esnault, Robert Forsyth, Valentin Cabon, Brice Bensoussan, Yann Laurent, Arnaud Le Houedec, Mickaël Ouisse, Loïs Morel, Esteban Vilboux, Marjorie Fangain, Timothée Cantard, Benoit Maubé, Daniel Chicouene, Nicolas La Marechal.","pubDate":"2025-03-11T00:00:00.000+00:00","maintenanceUpdateFrequency":"AS_NEEDED","maintenanceDescription":"New data will be implemented when more BioBlitz data becomes available and after future BioBlitz events.","license":"http://creativecommons.org/licenses/by-nc/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Occurrence","extensions":[],"modified":"2025-07-02T11:11:53.257+00:00"},"category":["CitizenScience"]},{"key":"080ffaf0-8daf-48bb-b063-3d729c80cb70","installationKey":"0a14e644-0b5a-4b59-b9b2-64577a41f8ae","publishingOrganizationKey":"7de30ffe-19bb-489f-a1fb-5e291ad006d5","doi":"10.15468/72z7yr","external":false,"numConstituents":0,"type":"OCCURRENCE","title":"NATURING_CS_Observation_Dataset","description":"<p>These are verified observation records from the citizen science platform NATURING(www.naturing.net). 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Expeditions has organized 'urban expeditions' in greenspaces in Amsterdam, the aim of which has been to form teams of both community scientists from the neighbourhood and professional biodiversity experts and to carry out high-quality explorations of invertebrates of urban greenspaces. Each 'expedition' entailed training for the community scientists in field methods for biodiversity sampling and techniques for preserving, studying, and identifying invertebrates. Each expedition also yielded large numbers of specimens that were worked up into permanent collection specimens and identified by the participating experts. The results were published in reports and papers, partly authored with the community scientists. We now have a rich baseline of invertebrates from these greenspaces, which reveal important ecological patterns. This digitization of the data, with particular emphasis on the soil invertebrates, provides a baseline from these greenspaces.\n        ","language":"eng","logoUrl":"https://ipt.nlbif.nl/logo.do?r=taxon_expeditions_amsterdam","citation":{"text":"Cooper L, de Voogd M (2026). Taxon Expeditions soil invertebrate data from community science inventories of urban greenspaces in Amsterdam. Version 1.10. Taxon Expeditions. 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This initiative draws participation from volunteers, amateur naturalists, students, and families, aiming to cultivate community bonds and heighten awareness of biodiversity and conservation efforts in the Azores. The project commenced with its first session in the Public Garden &#34;Jardim Duque da Terceira&#34; (Angra do Heroísmo, Terceira Island) and held its second session in the same location in 2023.</p><p>In our study of lichens, we identified 72 taxa. For vascular plants, our research identified 54 taxa, which included one endemic, one native, three of indeterminate status, and 49 that were introduced.</p><p>Our arthropod survey produced an inventory of 96 taxa, with 76 classified to the species or subspecies level. This group included three endemic taxa, 32 native taxa, and 42 introduced taxa. A significant finding was the rare endemic spider, Savigniorrhipis acoreensis Wunderlich, 1992, which inhabits the canopies of endemic trees in native forests at mid to high elevations, demonstrating its specific habitat needs and the unique ecology of the region.</p><p>In terms of birds, we recorded 14 taxa, consisting of seven endemic Azorean subspecies, two native species, and four introduced taxa.</p><p>Three freshwater vertebrates were recorded during the survey, all of which are exotic species that have been introduced to the local ecosystem.</p>","language":"eng","citation":{"text":"Borges P A V, Gabriel R, Lhoumeau S, Videira S, Amorim I R (2025). BioBlitz Azores: Multitaxa inventories of the biodiversity of “Jardim Duque da Terceira” (Angra do Heroísmo,Terceira Island, Azores, Portugal).. Version 1.5. Universidade dos Açores. 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Arquipelago Life and Marine\nSciences 30: 57‑70.","identifier":"http://hdl.handle.net/10400.3/2079","citationProvidedBySource":false},{"text":"de Vasconcelos Monteiro EC (2015) Monitoring plant phenology between citizens and science:\" Serralves em Flora\", a case study from Portugal.","identifier":"https://cibio.up.pt/en/sciencesociety/ monitoring-plant-phenology-between-citizens-and-science-serralves-em-flora-acase- study-from-portugal/.","citationProvidedBySource":false},{"text":"Palma E, Mata L, Cohen K, Evans D, Gandy B, et al. (2024) The city nature challenge: A global citizen science phenomenon contributing to biodiversity knowledge and informing local government practices. BioScience 74 (4): 290‑299.","identifier":"https://doi.org/10.1093/biosci/ biae012","citationProvidedBySource":false},{"text":"Parker SS, Pauly GB, Moore J, Fraga NS, Knapp JJ, Principe Z, Brown BV, Randall JM, Cohen BS, Wake TA (2018) Adapting the bioblitz to meet conservation needs. 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Additionally, it encompasses representatives from the classes Actinopterygii (fish), Amphibia (frogs), and Aves (birds).","coverages":[{"scientificName":"Ascomycota","commonName":"Lichens","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Ginkgophyta","commonName":"Ginkgo","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Pteridophyta","commonName":"Ferns","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Pinophyta","commonName":"Conifers","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Magnoliophyta","commonName":"Flowering plants","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Arthropoda","commonName":"Arthropods","rank":{"verbatim":"phylum","interpreted":"PHYLUM"}},{"scientificName":"Actinopterygii","commonName":"Fish","rank":{"verbatim":"class","interpreted":"CLASS"}},{"scientificName":"Amphibia","commonName":"Frogs","rank":{"verbatim":"class","interpreted":"CLASS"}},{"scientificName":"Aves","commonName":"Birds","rank":{"verbatim":"class","interpreted":"CLASS"}}]}],"geographicCoverages":[{"description":"This study was conducted in a city public garden: \"Jardim Duque da Terceira\" at Angra do Heroísmo on Terceira Island (Azores, Portugal). Terceira Island (total area: 400.2 km²; maximum elevation: 1021 meters above sea level)","boundingBox":{"minLatitude":38.655,"maxLatitude":38.661,"minLongitude":-27.223,"maxLongitude":-27.213,"globalCoverage":false}}],"temporalCoverages":[{"@type":"range","start":"2019-07-27T00:00:00.000+00:00","end":"2019-07-27T00:00:00.000+00:00"},{"@type":"range","start":"2023-06-17T00:00:00.000+00:00","end":"2023-06-17T00:00:00.000+00:00"}],"keywordCollections":[{"thesaurus":"GBIF Dataset Type Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_type_2015-07-10.xml","keywords":["Public Garden","Lichens","Arthropods","Birds","Vascular Plants","Biodiversity","Citizen Science","Occurrence"]},{"thesaurus":"GBIF Dataset Subtype Vocabulary: http://rs.gbif.org/vocabulary/gbif/dataset_subtype.xml","keywords":["Specimen"]}],"project":{"title":"BioBlitz Azores: Multitaxa inventories of the biodiversity of “Jardim Duque da Terceira” (Angra do Heroísmo,Terceira Island, Azores, Portugal).","identifier":"BioBlitz Azores","contacts":[{"type":"CONTENT_PROVIDER","primary":false,"userId":["https://orcid.org/0000-0002-8448-7623"],"firstName":"Paulo A. V.","lastName":"Borges","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"AUTHOR","primary":false,"userId":[],"firstName":"Isabel R.","lastName":"Amorim","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"AUTHOR","primary":false,"userId":[],"firstName":"Jagoba","lastName":"Malumbres-Olarte","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"António Felix","lastName":"Rodriques","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"Cecília","lastName":"Melo","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"Susana","lastName":"Gonçalves","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"Paulo J.M.","lastName":"Barcelos","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"Rúben","lastName":"Coelho","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"METADATA_AUTHOR","primary":false,"userId":[],"firstName":"Lucas","lastName":"Lamelas-López","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"AUTHOR","primary":false,"userId":[],"firstName":"Sébastien","lastName":"Lhoumeau","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"AUTHOR","primary":false,"userId":[],"firstName":"Sandra","lastName":"Videira","position":[],"email":[],"phone":[],"homepage":[],"address":[]},{"type":"AUTHOR","primary":false,"userId":[],"firstName":"Rosalina","lastName":"Gabriel","position":[],"email":[],"phone":[],"homepage":[],"address":[]}],"funding":"-Azorean Regional Secretariat for the Sea, Science and Technology; Azorean Regional Directorate of Science and Technology - BioBLitz Azores (DRCT M3.4.B/CIÊNCIA CIDADÃ/004/2019/RTF/033\n-Science and Technology Foundation (FCT) - MACRISK-Trait-based prediction of extinction risk and invasiveness for Northern Macaronesian arthropods (FCT-PTDC/BIA-CBI/0625/2021).\n-Portal da Biodiversidade dos Açores (2022-2023) - PO Azores Project - M1.1.A/INFRAEST CIENT/001/2022 (2022).\n-FCT-UIDB/00329/2020-2024, DOI 10.54499/UIDB/00329/2020 (Thematic Line 1–integrated ecological assessment of environmental change on biodiversity).\n-FCT-UID/00329/2025 - Centre for Ecology, Evolution and Environmental Changes (CE3C).\n-Azores DRCT Pluriannual Funding (M1.1.A/FUNC.UI&D/010/2021-2024).\n-IRA was funded by Portuguese national funds through FCT – Fundação para a Ciência e a Tecnologia, I.P., under the Norma Transitória https://doi.org/10.54499/DL57/2016/CP1375/CT0003.","awards":[],"studyAreaDescription":"This research was conducted in the \"Jardim Duque da Terceira,\" a city public garden located in Angra do Heroísmo on Terceira Island, within the Azores, Portugal. Terceira Island, with a total area of 400.2 square kilometers and a peak elevation of 1021 meters above sea level, is strategically situated in the central group of the Azores Archipelago in the North Atlantic Ocean, at approximately 38°43′40″N latitude and 27°12′48″W longitude. The Azores Archipelago experiences a temperate oceanic climate, marked by consistent and plentiful rainfall, high relative humidity, and frequent winds, which contribute to its lush, verdant landscapes. The island's terrain is varied, featuring urban and agricultural areas at lower elevations, which transition to pasturelands interspersed with exotic tree plantations towards the inland areas. The higher elevations preserve remnants of native forests, which are critical habitats for local biodiversity and play a vital role in maintaining the ecological balance of the region. This unique setting provides an excellent backdrop for studying urban and semi-natural ecosystems within island environments.","designDescription":"Each session was about two hours long, and participants could choose their area of interest beforehand. The sessions began with a briefing to explain the process and goals of the BioBlitz, setting expectations for what participants would learn and accomplish. In addition to field observations, a mini-laboratory was set up in the garden where participants could use binocular microscopes and hand lenses to examine finer details of specimens, which are crucial for the identification of smaller species like insects and lichens","relatedProjects":[{"title":"MACRISK - Functional attributes predicting the risk of extinction and invasion for the arthropods of Northern Macaronesia","identifier":"FCT - PTDC/BIA-CBI/0625/2021","contacts":[{"type":"CURATOR","primary":false,"userId":["https://orcid.org/0000-0002-8448-7623"],"firstName":"Paulo A. V.","lastName":"Borges","position":[],"email":[],"phone":[],"homepage":[],"address":[]}]}],"abstract":"This dataset represents the inaugural output from the \"BioBlitz Azores\" initiative, launched in 2019 with the objective of enhancing understanding of the Azorean biota and fostering community engagement. This initiative draws participation from volunteers, amateur naturalists, students, and families, aiming to cultivate community bonds and heighten awareness of biodiversity and conservation efforts in the Azores. The project commenced with its first session in the Public Garden \"Jardim Duque da Terceira\" (Angra do Heroísmo, Terceira Island) and held its second session in the same location in 2023."},"samplingDescription":{"studyExtent":"This research was conducted in the \"Jardim Duque da Terceira,\" a city public garden located in Angra do Heroísmo on Terceira Island, within the Azores, Portugal. Terceira Island, with a total area of 400.2 square kilometers and a peak elevation of 1021 meters above sea level, is strategically situated in the central group of the Azores Archipelago in the North Atlantic Ocean, at approximately 38°43′40″N latitude and 27°12′48″W longitude.","sampling":"Lichens: The search for lichens mainly involved examining tree bark and rocks. Participants occasionally collected samples for closer examination under magnification tools to accurately determine the species.\nPlants: Participants examined various plant features such as size, leaf details, flowers, and fruits, and in some cases utilized smell to aid in species identification.\nArthropods: Different capture and observation techniques were applied depending on the habitat and the type of arthropods being studied. These techniques were explained in detail to participants before the start of the session. Two main methods were used: a) Sweep Netting - Participants used sweep nets to collect arthropods from vegetation. This involves sweeping a net through the foliage where arthropods might be resting or feeding, which is effective for catching flying or jumping insects; b) Beat Sampling - This technique was used to dislodge arthropods from trees and bushes. Participants held a sheet or tray under a branch and then shook or beat the branch, causing arthropods to fall onto the sheet for collection and identification.\nBirds: Birdwatching required participants to be quiet and observant, using binoculars and listening for bird calls to locate and identify species both in the tree canopy and on the ground.","qualityControl":"Taxonomists: António Felix Rodriques and Rosalina Gabriel (lichens); Paulo A. V. Borges (arthropods); Lucas Lamelas-Lopez (freshwater organisms); Susana Gonçalves and Paulo J.M. Barcelos (vascular plants); Cecília Melo and Rúben Coelho (birds).","methodSteps":["Arthropod Curation: Voucher specimen management was mainly undertaken by Alejandra Ros-Prieto, Abrão Leite, Ricardo Costa,  Paulo A. V. Borges.\n\nDarwin Core Databases: Paulo A.V. Borges, Sébastien Lhoumeau, Sandra Videira, Rosalina Gabriel."]},"countryCoverage":[],"collections":[{"name":"Entomoteca Dalberto Teixeira Pombo (DTP)","identifier":"DTP","specimenPreservationMethod":"ALCOHOL","curatorialUnits":[]}],"dataDescriptions":[],"dataLanguage":"eng","purpose":"The primary goal of this dataset is to disseminate the findings from the BioBlitzes multi-taxa inventories conducted in the \"Jardim Duque da Terceira\" in Angra do Heroísmo, Terceira Island, Azores, Portugal. It not only documents the diverse species found in this distinctive sites but also aims to inspire both local and global communities to participate in citizen science and biodiversity monitoring projects. Additionally, this publication encourages policymakers, researchers, and conservationists to focus on preserving urban and semi-natural habitats, serves as an educational tool demonstrating the benefits of collaborative scientific endeavors, and underscores the cultural and scientific significance of incorporating historical gardens like \"Jardim Duque da Terceira\" into conservation efforts. Through these efforts, it seeks to advance environmental education, biodiversity research, and the sustainable management of urban green spaces","introduction":"<p>BioBlitz events, first initiated in 1996 by the National Park Service in the United States, are intense 24-hour biodiversity surveys that combine scientific inquiry with public participation, setting a standard for future events. These events are now a global phenomenon, recognized for their significant contributions to biodiversity assessment, public engagement, and conservation action, as noted by Parker et al. (2018). They not only facilitate a deeper public understanding of biodiversity but also serve as vital tools for monitoring ecological changes and shaping conservation strategies, according to Palma et al. (2024).</p><p>In Portugal, since 2013, the Serralves Foundation has organized annual BioBlitz events, collaborating with various educational and environmental organizations to raise awareness of urban and peri-urban biodiversity through activities like species identification workshops and guided tours, as described by de Vasconcelos Monteiro (2015) and Tiago et al. (2024).</p><p>The Azores Archipelago, a biodiversity hotspot noted for its unique geographic isolation, varied habitats, and endemic species, serves as an ideal setting for BioBlitzes. These events can yield important data on both endemic and exotic species, particularly in disturbed habitats at lower elevations where recent introductions are noted by Barreiros et al. (2010) and Borges et al. (2013). Moreover, there's evidence that some endemic arthropods persist in isolated low elevation forest patches, as found by Tsafack et al. (2021), highlighting the potential of BioBlitzes to uncover rare species and contribute to global biodiversity databases like iNaturalist, as discussed by Aristeidou et al. (2021).</p>","gettingStarted":"<p>During the BioBlitz Açores events in 2019 and 2023 at Jardim Duque da Terceira, specialized sampling protocols were used to study different taxa, each tailored to the specific needs of the group being studied. For lichens, participants examined tree bark and rocks, occasionally collecting samples for closer analysis under magnification tools. In studying plants, features such as size, leaf details, flowers, and fruits were observed, sometimes utilizing smell for identification. Arthropod sampling involved techniques like sweep netting—sweeping nets through vegetation to capture insects—and beat sampling, where arthropods were dislodged onto a sheet by shaking branches. Birdwatching sessions required quiet observation, using binoculars and listening for calls to identify birds in various habitats. Each session lasted about two hours, starting with a briefing on goals and processes. A mini-laboratory provided further examination opportunities with binocular microscopes and hand lenses, enhancing participant engagement and educational outcomes while fostering a deeper connection with nature.</p>","acknowledgements":"<p>We are grateful to the Mayor of Angra do Heroísmo for Field Work authorizaton.</p>","pubDate":"2025-04-14T00:00:00.000+00:00","maintenanceUpdateFrequency":"UNKNOWN","maintenanceDescription":"","license":"http://creativecommons.org/licenses/by/4.0/legalcode","dwca":{"coreType":"http://rs.tdwg.org/dwc/terms/Event","extensions":["http://rs.tdwg.org/dwc/terms/Occurrence"],"modified":"2025-07-02T11:43:42.065+00:00"},"category":["CitizenScience"]},{"key":"bf570b1b-2aeb-4081-8147-252ec3c67cc5","installationKey":"a299935f-3216-4a11-bc3b-c370b2325eff","publishingOrganizationKey":"7de30ffe-19bb-489f-a1fb-5e291ad006d5","doi":"10.15468/mxmvht","external":false,"numConstituents":0,"type":"OCCURRENCE","subtype":"OBSERVATION","title":"NATURING_CS_Observation_2020","description":"<p>2020 Citizien Science Observation Via NATURING (Citizen Science Platform)</p>","language":"eng","citation":{"text":"Kang H G (2025). 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S., Pärt, T., Pavón-Jordán, D., Sandercock, B. K., Soultan, A. & Brommer, J. E., 2024. Changes in waterbird occurrence and abundance at their northern range boundaries in response to climate warming: importance of site area and protection status. (E-pub ahead of print) In: Animal Conservation.","citationProvidedBySource":false},{"text":"Gaget, E., Johnston, A., Pavón-Jordán, D., Lehikoinen, A. S., Sandercock, B. K., Soultan, A., Božič, L., Clausen, P., Devos, K., Domsa, C., Encarnação, V., Faragó, S., Fitzgerald, N., Frost, T., Gaudard, C., Gosztonyi, L., Haas, F., Hornman, M., Langendoen, T. & Ieronymidou, C. & 15 others, , 2022. Protected area characteristics that help waterbirds respond to climate warming. Conservation Biology 36, 4.","citationProvidedBySource":false},{"text":"Gaget, E., Pavón-Jordán, D., Johnston, A., Lehikoinen, A., Hochachka, W. M., Sandercock, B. K., Soultan, A., Azafzaf, H., Bendjedda, N., Bino, T., Božič, L., Clausen, P., Dakki, M., Devos, K., Domsa, C., Encarnação, V., Erciyas-Yavuz, K., Faragó, S., Frost, T. & Gaudard, C. & 30 others, , 2021. Benefits of protected areas for nonbreeding waterbirds adjusting their distributions under climate warming. 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The entire Swedish coastline is divided into ca 3100 such sectors, ca 2300 of which have been surveyed in January. In the inland, small lakes become sectors of their own while large lakes, as well as streams and rivers, are each split into several sectors. At present almost 1400 inland sectors have been surveyed in January. It is possible for surveyors to create new inland counting sectors, as well as start previously not surveyed coastal sectors, provided the intention is to survey them for several years. The waterbird census in January and September are using the same system of counting sectors.\n\nTiming and frequency: The survey should in general be carried out once in the middle of January, but a sector is allowed to be censused more than once in a given year if different methods are used (see below).\n\nThe exact survey dates are decided and notified by the project management every year. 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