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247 results for “inland water”
Figure 11 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 11. Distribution of the members of Pontogammaridae, Eriopisidae, Hadziidae, Melitidae and Ischyroceridae in Turkish inland waters.
Figure 8 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 8. Distribution of the members of Gammaridae (Gammarus partly, species in alphabetical order) in Turkish inland waters.
Figure 9 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 9. Distribution of the members of Gammaridae (Gammarus partly, species in alphabetical order) in Turkish inland waters.
Figure 6 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 6. Distribution of the members of Gammaridae (Gammarus partly, species in alphabetical order) in Turkish inland waters.
Figure 7 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 7. Distribution of the members of Gammaridae (Gammarus partly, species in alphabetical order) in Turkish inland waters.
Figure 17 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 17. Distribution of the members of Leptocheliidae, Tanaellidae and Tanaididae in Turkish inland waters.
Figure 10 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 10. Distribution of the members of Gammaridae (Gammarus partly, species in alphabetical order) in Turkish inland waters.
Figure 2 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 2. Distribution of the members of Stenothoidae, Dexaminidae, Aoridae, Bogidiellidae, and Caprellidae in Turkish inland waters.
Figure 5 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 5. Distribution of the members of Gammaridae (Amathillina, Dikerogammarus and Echinogammarus) in Turkish inland waters.
Figure 21 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 21. Distribution of the members of Dromiidae, Paguridae, Varunidae, Pandalidae, and Penaeidae in Turkish inland waters.
Figure 15 in An updated and annotated checklist of the Malacostraca (Crustacea) species inhabited Turkish inland waters
Figure 15. Distribution of the members of Anthuridae, Cirolanidae, Ligiidae, Tylidae, Sphaeromatidae and Idoteidae in Turkish inland waters.
GLOBMAP SWF: a global annual surface water cover frequency dataset since 2000 for change analysis of inland water bodies
<p>The extent of surface water has been changing significantly due to climatic change and human activities. However, it is challenging to capture the interannual changes and trends of inland water bodies due to their high seasonal variation and abrupt change. We generated a global annual surface water cover frequency dataset (GLOBMAP SWF) from the MODIS land surface reflectance products to describe the seasonal and interannual dynamics of surface water. Surface water cover frequency (SWF) was proposed as the percentage of the time period when a pixel is covered by water in a year. Instead of determination of the water observations directly, the SWF was estimated indirectly by identifying land observations among annual clear-sky observations to reduce the influence of clouds and variability of water body and surface background characteristics, which helps to improve the applicability of the algorithm for different regions across the globe. Regional analysis demonstrates that our estimation results show reasonable performances on frozen water, saline lake, bright surface and cloud-frequent regions. This dataset can be used to analyze the interannual variation and change trend of highly dynamic inland water body extent with consideration of its seasonal variation.</p> <p>The GLOBMAP SWF dataset is provided in Version 1.0 (https://zenodo.org/record/6462883#.YxC16HZBw2w). Here we provide the number of MOD09A1 (MODIS 8-day composite land surface reflectance) clear-sky snow/ice-free observations (<em>N<sub>Clear</sub></em>) data as a quality dataset of GLOBMAP SWF product. The clear-sky observation refers to the valid MOD09A1 observation that not covered with clouds and snow/ice. The more available clear-sky observations, the more reliable the estimated SWF.</p> <p>The <em>N<sub>Clear </sub></em>dataset is provided by 296 1200 km × 1200 km tiles at annual temporal and 500 m spatial resolutions in the sinusoidal projection with Geotiff format for each year during 2000-2020. The file is named as "GLOBMAPClearCount. AYYYY001.hHHvVV.V01.tif", where “YYYY” refers to the year of the file, and “HH” and “VV” explains the number of tiles that are the same with MODIS standard tile. The valid range is 0-46, scale factor is 1.0. The <em>N<sub>Clear </sub></em>of permanent water (land obervation count of 46), permanent snow/ice and terrain shadows are set to 50.</p>
Figure 32 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 32. Distribution of material examined in this study: a, P. arrostra; b, P. whitemae; c, P. tasmaniensis. Maps created in Cartographica.
Figure 31 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 31. Paratya gariwerdensis sp. nov.: a, pereiopod 3; b, dactylus 3; c, pereiopod 4; d, dactylus 4; e, pereiopod 5; f, dactylus 5; g, telson; h, telson terminal spines; i, pleopod 1 of female; j, endopod of pleopod 1 of male. Scale lines 0.2 mm.
Figure 29 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 29. Paratya rouxi sp. nov.: a, pereiopod 4; b, dactylus 4; c, pereiopod 5; d, dactylus 5; e, telson; f, telson terminal spines; g, pleopod 1 of female; h, pleopod 1 of male; i, endopod 1 of male. Scale lines 0.2 mm.
Figure 28 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 28. Paratya rouxi sp. nov.: a, maxilliped 3; b, pereiopod 1; c, pereiopod 2; d, pereiopod 3; e, dactylus 3. Scale lines 0.2 mm.
Figure 26 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 26. Paratya tasmaniensis Riek: a, pereiopod 4; b, dactylus 4; c, pereiopod 5; d, dactylus 5; e, telson; f, telson terminal spines; g, pleopod 1 of female; h, pleopod 1 of male; i, endopod 1 of male. Scale lines 0.2 mm.
Figure 24 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 24. Paratya tasmaniensis Riek: a, head region and rostrum; b, antenna 1 peduncle and stylocerite; c, scaphocerite; d, left mandible; e, enlarged incisors; f, right mandible; g, enlarged incisors; h, maxilla 1; i, maxilla 2; j, maxilliped 1; k, maxilliped 2. Scale lines 0.2 mm.
Figure 23 in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 23. Paratya strathbogiensis sp. nov.: a, telson; b, telson terminal spines; c, pleopod 1 of female; d, pleopod 1 of male; e, endopod 1 of male. Scale lines 0.2 mm.
Figure 30. Paratya gariwerdensis n in New species of Paratya (Decapoda: Atyidae) from Australian inland waters - linking morphological characters with molecular lineages
Figure 30. Paratya gariwerdensis n.sp.: a) head region and rostrum; b, antenna 1 peduncle and stylocerite; c, scaphocerite; d, left mandible; e, enlarged incisors; f, right mandible; g, enlarged incisors; h maxilla 1; i, maxilla 2; j, maxilliped 1; k maxilliped 2; l, maxilliped 3; m, peraeopod 1; n, peraeopod 2. Scale lines 0.2mm.
ScienceDex guides
Understand access before you commit
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.