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129 results for “Island biodiversity”
Automated monitoring of biodiversity in the tropics: A pilot study at Barro Colorado Island
<p>Automated monitoring of biodiversity using camera systems and acoustic devises is becoming increasingly common practise. The development of camera traps for insects, however, is relatively new, and has not been tested in tropical environments. To understand both the challenges and opportunities for automated monitoring in the tropics we deployed three newly developed cameras systems for monitoring insects, with a focus on night-flying insects. In addition we deployed audible and ultrasound recording equipment. The locations of each device was changed over the 5 day pilot study, and the configuration of each system was changed to allow an assessment of the relative importance of position, light, etc. The study was undertaken on Barro Colorado Island, Panama, in January 2023.</p> <p>Data are aggregated into <em>.zip</em> files, and details of their contents, and metadata are given in <em>read_me.txt</em> and <em>metadata.csv</em>.</p>
Fig. 8 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 8. Plot of the non-metric multidimensional scaling (nMDS) based on the by Bray–Curtis similarity index for logarithmic values of meiobenthos taxa density in the recognized habitats of the Snake Island MPA (Black Sea).
Fig. 7 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 7. Cluster analysis dendrogram based on meiobenthos density on the different habitats in MPA of the Snake Island (Black Sea).
Fig. 4 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 4. The average density (N, means ± SE ind.·m–2) and biomass (B, means ± SE mg·m–2) of the total meiobenthos with contribution permanent and temporary taxa in the different habitats of the Snake Island MPA (Black Sea).
Fig. 3 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 3. Meiobenthic community structure of different substrate types in the MB143 habitat of the Snake Island MPA (Black Sea).
Fig. 2 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 2. The average density (N, means ± SE ind.·m–2) and biomass (B, means ± SE mg·m–2) of the total meiobenthos of different substrate types in the MB143 habitat of the Snake Island MPA (Black Sea).
Fig. 1 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 1. The map-scheme of the study area near the Snake Island (north-western Ukrainian shelf of the Black Sea).
Fig. 6 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 6. The contribution (%) of each meiobenthic taxon to the average density and biomass in the different habitats of the Snake Island MPA (Black Sea).
Reference map illustrating the major Philippine faunal regions as defined by the Pleistocene Aggregate Island Complexes (PAICs). Selected island groups, such as the Babuyans, Batanes, the Romblon Island Group (RIG), and the Sulu Archipelago, are also indicated. in Synopsis of the Snakes of the Philippines A Synthesis of Data from Biodiversity Repositories, Field Studies, and the Literature
Reference map illustrating the major Philippine faunal regions as defined by the Pleistocene Aggregate Island Complexes (PAICs). Selected island groups, such as the Babuyans, Batanes, the Romblon Island Group (RIG), and the Sulu Archipelago, are also indicated.
The unpatterned orange morph of Philippine Boiga cynodon photographed in 2016 in the University of the Philipines at Los Baños Quezon Land Grant Forest Reserve, Municipality of Siniloan, Quezon Province, southeastern Luzon Island, Photo: Rafe M. Brown. in Synopsis of the Snakes of the Philippines A Synthesis of Data from Biodiversity Repositories, Field Studies, and the Literature
The unpatterned orange morph of Philippine Boiga cynodon photographed in 2016 in the University of the Philipines at Los Baños Quezon Land Grant Forest Reserve, Municipality of Siniloan, Quezon Province, southeastern Luzon Island, Photo: Rafe M. Brown.
Fig. 3 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 3. Geographical extension of Spheciospongia globularis (Dendy, 1922). © 2018 Academia Sinica, Taiwan
Fig. 13 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 13. Geographical extension of Axinyssa mertoni (Hentschel, 1912). © 2018 Academia Sinica, Taiwan
Fig. 10 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 10. Oceanapia fistulosa (Bowerbank, 1873). (A) Specimen after preservation. (B1) Thick Oxea. (B2) Thin Oxea. (C) Longitudinal section. (D) Longitudinal section showing soft coral sclerites. (E) Transverse section showing soft coral sclerites. (F) Transverse section.
Fig. 6 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 6. Biemna fortis (Topsent, 1897). (A) Specimen after preservation. (B1) Styles. (B2) Trichodragmas. (C1) Large sized Sigma. (C2) Medium sized sigma. (C3) Small sized Sigma (D) Longitudinal section. (E) Transverse section.
Fig. 9 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 9. Geographical extension of Siphonodictyon mucosum Bergquist, 1965. © 2018 Academia Sinica, Taiwan
Fig. 8. Siphonodictyon mucosum Bergquist, 1965 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 8. Siphonodictyon mucosum Bergquist, 1965. (A) Specimen after preservation. (B) Oxea. (C) Longitudinal section. (D) Longitudinal section. (E) Transverse section. (F) Transverse section.
Fig. 2 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 2. Spheciospongia globularis (Dendy, 1922). (A) Specimen in situ. (B) Specimen after preservation. (C1) Large sized Tylostyles. (C2) Medium sized Tylostyles. (C3) Small sized Tylostyles. (C4) Spiraster. (D) Longitudinal section. (E) Longitudinal section. (F) Transverse section.
Fig. 14. Plakortis communis Muricy, 2011 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 14. Plakortis communis Muricy, 2011. (A) Specimen after preservation. (B1) Diods. (B2) Y-shaped triods. (C) Longitudinal section. (D) Longitudinal section. (E) Transverse section. (F) Transverse section.
Fig. 12 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 12. Axinyssa mertoni (Hentschel, 1912). (A) Specimen after preservation. (B) Close view of fistular structure. (C) Oxea. (D) Longitudinal section. (E) Longitudinal section. (F) Transverse section. (G) Transverse section.
Fig. 4 in New Records and Range Extensions of Some Marine Sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; Part of the Indo-Burma Biodiversity Hotspot.
Fig. 4. Cliothosa aurivilli (Lindgren, 1897). (A) in situ specimen. (B) Papillar connection with the inside body mass of sponge. (C) Space inside the dead coral bored by the sponges. (D1) Thick Tyalostyles. (D2) Thin Tyalostyles. (D3) Amphiaster. (E) Longitudinal section. (F) Transverse section.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.