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6,771 results for “freshwater”
Figure 2 in Four new freshwater gobies of the genus Rhinogobius (Teleostei: Gobiidae) from northern Vietnam
Figure 2. Head lateral-line system of Rhinogobius boa, paratype, CMK 14986, 26.7 mm SL. Scale bar: 1 mm.
Figure 3 in Four new freshwater gobies of the genus Rhinogobius (Teleostei: Gobiidae) from northern Vietnam
Figure 3. Head lateral-line system of Rhinogobius sulcatus, paratype, CMK 14981, 25.4 mm SL. Scale bar: 1 mm.
Figure 1 in Four new freshwater gobies of the genus Rhinogobius (Teleostei: Gobiidae) from northern Vietnam
Figure 1. Distribution of Rhinogobius boa (white triangles), R. sulcatus (diamond), R. variolatus (squares), and R. virgigena (black triangle) in north-eastern Vietnam. A, Mong Cai; B, Tien Yen; C, Ba Che; D, Mong Duong.
MITgcm model setup and output for "Impact of subglacial freshwater discharge on Pine Island Ice Shelf"
<p>Here, it contains the results of the regional PIG simulation. Model grid is lat-lon similar to Nakayama et al., 2019 roughly 200 m in the region. See Nakayama et al., submitted to GRL for detail. </p> <p>For complete model output (10*Qsg and 50*Qsg cases), please access NASA data (Registration is required).<br> https://ecco.jpl.nasa.gov/drive/files/ECCO2/High_res_PIG/PIG_only_200m </p> <p>Contents can be downloaded easily using wget (see link below). <br> https://ecco-group.org/docs/wget_download_multiple_files_and_directories.pdf</p> <p><strong>(Contents)</strong><br> code.zip (code to run this simulation)<br> input.zip (input file required for this simulation)<br> latlon_run23.zip (CTRL)<br> latlon_run24.zip (Qsg case)<br> latlon_run25.zip (2*Qsg case)<br> <br> <strong>(How to build and run)</strong><br> mkdir build<br> ./../../tools/genmake2 -of ../../../tools/build_options/linux_amd64_ifort+mpi_ice_nas -mpi -mods ../code/<br> make depend<br> make -j 16<br> cd ..</p> <p>mkdir test<br> cd test<br> ln -sf ../input/* .<br> ln -sf /nobackup/hzhang1/forcing/era_xx_it50/ .<br> cp ../build/mitgcm_uv .<br> qsub latlon_run23.sh</p>
Figure 2 in Freshwater invertebrates of subantarctic South Georgia
Figure 2. Upper map: lakes of the TØnsberg Peninsula, Stromness Bay. Lower map: sampling sites in the region of the Husvik whaling station (station marked with an H).
Figure 4 in Freshwater sponges of the West Indies: Discovery of Spongillidae (Haplosclerida, Spongillina) from Cuba with biogeographic notes and a checklist for the Caribbean area
Figure 4. Radiospongilla crateriformis from Cuba (DTRGFW603). SEM photomicrographs of resistant bodies and spicular complement. (A) Gemmule (cross-section); (B) gemmule with the outer layer pierced by distal rotules of radial gemmuloscleres; (C) gemmule without outer layer; (D) gemmular theca (cross-section) with radial gemmuloscleres adhering to the inner layer by the proximal rotules. Pneumatic layer as thin scattered spongin fibres; (E) gemmular theca with free distal rotules; (F) megasclere oxea with small spines; (G) microscleres spiny strongyloxeas; (H) gemmulosclere pseudobirotule with spiny shaft and bent long spines at the apices; (I) apices of gemmuloscleres; (J) apices of megascleres oxeas; (K) apex of microsclere strongyloxea.
Figure 3 in Freshwater sponges of the West Indies: Discovery of Spongillidae (Haplosclerida, Spongillina) from Cuba with biogeographic notes and a checklist for the Caribbean area
Figure 3. Ephydatia facunda from Cuba (DTRGFW600, DTRGFW602). SEM photomicrographs of resistant bodies and spicular complement. (A) Gemmule lateral view with foramen on the right (arrow); (B) cross-section of the gemmular theca; (C) top view of a gemmule with foramen in the centre (arrow); (D) gemmular theca at the foraminal level (cross-section); (E) trilayered gemmular theca with compact spongin in the outer and inner layer, and chambered spongin in the pneumatic layer (cross-section); (F) foramen (arrow) surrounded by distal rotules of gemmuloscleres; (G, H) outer layer with emerging distal rotules of gemmuloscleres [(G) top view; (H) crosssection]; (I) megascleres acanthoxeas; (J) gemmuloscleres birotules; (K) spiny rotules bearing indented margins.
Figure 2 in Freshwater sponges of the West Indies: Discovery of Spongillidae (Haplosclerida, Spongillina) from Cuba with biogeographic notes and a checklist for the Caribbean area
Figure 2. Anheteromeyenia cheguevarai nov. sp. from Cuba. Holotype MSNG52156 (Museum of Natural History, Genoa) and DTRGFW601 (author's collection). SEM photomicrographs of resistant bodies and spicular complement. (A) Gemmule with foramen (arrow); (B) foramen in a depressed area; (C) free distal pseudorotules of gemmuloscleres at the gemmular surface; (D) cross-section of the trilayered gemmular theca with radial gemmuloscleres pseudobirotules; (E) detail of the foramen with a developed tube and a thick foraminal membrane at the top (cross-section); (F) network of spongin fibres in the pneumatic layer; (G) megascleres spiny oxeas, rarely smooth, from straight to flexuous; (H) gemmuloscleres pseudobirotules with spiny shaft; (I) details of pseudorotules with umbone and bent smooth hooks.
Figure 5 in Freshwater sponges of the West Indies: Discovery of Spongillidae (Haplosclerida, Spongillina) from Cuba with biogeographic notes and a checklist for the Caribbean area
Figure 5. Radiospongilla sp. from Cuba (DTRGFW599). SEM photomicrographs of spicular complement. (A) Megasclere oxeas with small spines; (B) spiny apices of microscleres; (C) microspined shaft of microsclere; (D) microsclere.
Figure 1 in Freshwater sponges of the West Indies: Discovery of Spongillidae (Haplosclerida, Spongillina) from Cuba with biogeographic notes and a checklist for the Caribbean area
Figure 1. Study area of freshwater sponges in western Cuba with sites of sampling (circles) and findings (black dots with numbers). Cueva de los Indios (1: 22°409N, 83°439W; 2: 22°409N, 83°439W), Embalse San Juan (3), Rio San Juan (4), rapids in Rio San Juan (5), Embalse El Jibaro (6: 22°319N, 83°419W), Embalse El Salto (7: 22°379N, 83°419W), two small embalses along the Pinar–La Habana road (8: 22°589N, 82°399W; 9: 23°019N, 82°319W), Giardino Botanico Nacional of La Habana (10: 22°589N, 82°239W), Rio Ariguanabo near San Antonio de los Baños (11: 22°559N, 82°289W), Laguna del Tesor (12: 22°249N, 81°089W).
Figure 1 in Freshwater invertebrates of subantarctic South Georgia
Figure 1. Locations of the freshwater sampling sites around Stromness Bay and at Grytviken, South Georgia. Insert: map of South Georgia showing the sampling area.
Figure 2 in A new species of freshwater crab (Decapoda: Brachyura: Potamidae) from Dongyin Island, Matsu, Taiwan, defined by morphological and molecular characters, with notes on its biogeography
Figure 2. Nanhaipotamon dongyinense sp. nov.: (A–F) holotype male (31.3×25.8 mm) (NMNS 4557-001); (G, H) allotype female (26.5×22.2 mm) (NMNS 4557-002). (A) Third maxilliped; (B) male abdomen; (C) left G1, in situ; (D) left G1; (E) left G1, distal segment; (F) left G2; (G) female abdomen; (H) female gonopore.
Figure 3 in A new species of freshwater crab (Decapoda: Brachyura: Potamidae) from Dongyin Island, Matsu, Taiwan, defined by morphological and molecular characters, with notes on its biogeography
Figure 3. (A–C) Dorsal, frontal and ventral views of the fresh-preserved male paratype (CW 36.28 mm) (NMNS 4557-003) of Nanhaipotamon dongyinense sp. nov., Dongyin Island, Matsu, Taiwan; (D) live coloration of the female paratype (CW 29.66 mm) (NMNS 4557-008); (E) habitat; (F) a chimney around the entrance of burrow.
Figure 1 in A new species of freshwater crab (Decapoda: Brachyura: Potamidae) from Dongyin Island, Matsu, Taiwan, defined by morphological and molecular characters, with notes on its biogeography
Figure 1. Collection sites for Nanhaipotamon species used in this study. For locality names see Table I.
Figure 2 in Protozoan ciliate epibionts on the freshwater shrimp Caridina (Crustacea, Decapoda, Atyidae) from the Malili lake system on Sulawesi (Indonesia)
Figure 2. (a) Acineta; (b) Thuricola; (c) Cothurnia; (d) Vorticella; (e) Opercularia; (f) Zoothamnium. l, lorica; ma, macronucleus; mi, micronucleus; my, myoneme; o, operculum; s, stalk; sa, suprastylar area; t, tentacles.
Figure 1 in Protozoan ciliate epibionts on the freshwater shrimp Caridina (Crustacea, Decapoda, Atyidae) from the Malili lake system on Sulawesi (Indonesia)
Figure 1. The Malili lake system on the Indonesian island of Sulawesi with its three main lakes: Lake Towuti, Lake Mahalona, and Lake Matano.
Figure 24 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 24. Distribution of each epibiont species (mean densities) along the anterioposterior axis of Caridina ensifera. Anatomical units are considered individually. per, pereiopod; ple, pleopod; uro, uropod.
Figure 21 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 21. Dendrogram of the Hierarchical Cluster Analysis (anatomical units) performed using the mean densities of epibionts on the different anatomical units of the shrimps analysed (metric distance: City Block (Manhattan); method: Ward).
Figure 2 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 2. The epibiont species. (a) Acineta sulawesiensis; (b) Podophrya maupasi; (c) Spelaeophrya polypoides; (d) Zoothamnium intermedium; (e) Vorticella globosa; (f) Cothurnia compressa; (g) Amphileptus fusidens; (h) Embata laticeps; (i) Embata laticeps, the trophi. bd, basal disc; bl, basal lorica; c, cloaca; cv, contractile vacuole; l, lorica; ma, macronucleus; mi, micronucleus; my, myoneme; r, rostrum; s, stalk; st, stomach; t, tentacles; td, trochal discs; to, toes; v, vitellarium.
Figures 11–19 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figures 11–19. (11) Zoothamnium intermedium, area of stalk confluence for attachment to the shrimp surface (silver carbonate, ×400). (12) Vorticella globosa, a specimen with the contracted stalk (silver carbonate, ×710). (13) Cothurnia compressa, individual showing the lorica (silver carbonate, ×820). (14) Amphileptus fusidens, the body shape and the arrangement of the kineties (silver carbonate, ×770). (15–19) Embata laticeps: (15) the entire individual showing the trochal discs, rostrum, and toes (methyl green, ×200); (16) the anterior area of the body with the trochal discs and the rostrum (methyl green, ×410); (17) detail of the rostrum (methyl green, ×410); (18, 19) the trophi of the mastax, showing the unci and the teeth (×520).
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.