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3,067 results for “distribution records”
Fig. 3 in Four new species and five new distribution records of the jumping spider genus Stenaelurillus Simon, 1886 (Salticidae: Aelurillines) from India
Fig. 3. Stenaelurillus naldurg Kuni, Kadam & Tripathi sp. nov., habitus, live photographs. A–B, D. Holotype, ♂ (NRC-AA-6952). C, E–F. Paratype, ♀ (NRC-AA-6954). Photographs by Rishikesh Tripathi.
Fig. 1 in Four new species and five new distribution records of the jumping spider genus Stenaelurillus Simon, 1886 (Salticidae: Aelurillines) from India
Fig. 1. Stenaelurillus feral Tripathi, Kuni & Kadam sp. nov., holotype, ♂ (NRC-AA-6951). A. Male habitus, dorsal view. B. Male habitus, lateral view. C. Carapace, frontal view. D. Carapace, dorsal view. E. Male palp, ventral view; the arrow indicates the serration of RTA. F. Male palp, retrolateral view. Scale bars: A–B = 0.5 mm; C–D = 0.2 mm; E–F = 0.1 mm.
Fig. 4 in Four new species and five new distribution records of the jumping spider genus Stenaelurillus Simon, 1886 (Salticidae: Aelurillines) from India
Fig. 4. Stenaelurillus naldurg Kuni, Kadam & Tripathi sp. nov. A–D. Holotype, ♂ (NRC-AA-6952). A. Male habitus, dorsal view. B. Male habitus, lateral view. C. Carapace, frontal view. D. Leg I, prolateral view. E–H. Paratype, ♀ (NRC-AA-6954). E. Female habitus, dorsal view. F. Carapace, frontal view. G. Leg I, prolateral view. H. Female habitus, lateral view. Scale bars: A–B, E, H = 1 mm; C–D, F–G = 0.5 mm.
Figure 2 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 2. Number of cladoceran species from seven families in the state of Bahia, Brazil. The family Chydoridae was partitioned into Chydorinae and Aloninae sub-families.
Figure 1 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 1. Map of the current distribution of cladocerans throughout the drainage basins and freshwater ecoregions in Bahia State, Brazil. Previous species records are shown as black circles. New records/localities added by this study are shown as white circles, see Tabs. 1, 2. Red and blue colors represent each hydrographic basin within the specific ecoregion where cladocerans were recorded.
Figure 3 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 3. Rarefaction and extrapolation curve using the Hill number (q = 0 species richness) of the Cladocera fauna observed in Bahia State, Brazil (N = 17). Confidence interval of 95 % was obtained by bootstrap method and represented by the shaded area for the fitted curve.
Figure 2 in New distributional records of Megachile Latreille, 1802 (Apoidea: Megachilidae) from Indian States
Figure 2. Megachile species from India. (f) M. hera ♂ (dorsal view); (g.i) M. vera ♀ (dorsal view); (g.ii) M. vera ♀ (lateral view); (h) M. gathela ♀ (dorsal view); (i) M. lanata ♂ (dorsal view); (j) M. lanata ♀ (dorsal view).
Figure 1 in New distributional records of Megachile Latreille, 1802 (Apoidea: Megachilidae) from Indian States
Figure 1. Megachile species from India. (a) M. laticeps ♀ (dorsal view); (b) M. disjuncta ♂ (dorsal view); (c) M. fraterna ♀ (dorsal view); (d) M. coelioxysides ♀ (dorsal view); (e.i) M. hera ♀ (dorsal view); (e.ii) M. hera ♀ (lateral view).
Figure 1. Onchidium typhae Buchannan, 1800 in New Distributional Records of Onchidiid Slugs from Coringa Wildlife Sanctuary, Andhra Pradesh
Figure 1. Onchidium typhae Buchannan, 1800; a) crawling animal in the mud, b) animal in the lab showing the long tentacles, c) the hyponotum and foot. Platevindex tigrinus (Stoliczka, 1869); d) animal on the trunk of the large Avicennia plant, e) animal in lab showing the papillae on the notum, f) hyponotum and foot.
Figure 5 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 5. Cnidocysts of Diadumene leucolena [a. Spirocyst (G) from tentacle; b. Large basitrich from tentacle; c. Microbasic amastigophores from tentacles; d. Small basitrich from Mesenterial filaments; e. Large basitrich from Mesentrial filaments; f. Microbasic p- mastigophore from Mesentrial filaments; g. Spirocyst (G) from Mesentrial filaments; h. Basitrich from Actinopharynx; i. Spirocysts (G) from Actinopharynx; j. Microbasic amastigophores from Actinopharynx; k. Basitrich from Acontia; l. Microbasic p- mastigophore from Acontia].
Figure 2 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 2. Actinodendron arboreum [a. Actinodendron arboreum in sandy bottom; b. Branched tentacle of A. arboreum; c. Acrospheres].
Figure 1 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 1. Map showing area in which new records of sea anemones found in Andaman and Nicobar Islands.
Figure 6 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 6. Cross section of Diadumene leucolena [a. Middle portion of column showing mesenteries; b. Non-muscular gametogenic region of fertile mesenteries; c. Weak basilar muscles].
Figure 4 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 4. Diadumene leucolena [a. Diadumene leucolena in live condition; b. Capitulum and scapus in live condition; c; Specimen in preserved condition; d. Capitulum and scapus in preserved condition; e. Mouth; f. Cinclides].
Figure 3 in New distributional records of Actiniarian sea anemones from Andaman and Nicobar Islands
Figure 3. Cnidocysts of A. arboretum [a. Spirocyst (G) from tentacle; b. Long basitrich from tentacle; c. Basitrich from acrospheres d. Spirocysts from acrospheres; e. Microbasic p- mastigophore from acrospheres; f. Basitrich from column; g. Spirocyst from column].
Fig. 2 in On The Geographic Distribution Of Nemognatha Plaumanni Borchmann, 1942 (Coleoptera: Meloidae): New Records From Venezuela, With A 4500 Km Range Extension
Fig. 2. Latero-dorsalvieWofaspecimenof Nemognathaplaumanni BorcHmann, 1942, from tHeCordilleradelaCostaintHeStateofAragua (Venezuela), locatedabout 4500 kmnortH
Fig. 2 in New Distributional Records of Three Species of Euphylliidae (Cnidaria, Anthozoa, Hexacorallia, Scleractinia) from the Ryukyu Islands, Japan
Fig. 2. Corallum of Fimbriaphyllia species currently reported from the Ryukyu Islands, Japan, F. paraancora (A–D) and F. paradivisa (E–H). A, KAUM-CN-10, Tean, Amami-Oshima island, Kagoshima, Japan, depth of 32 m; B, CMNH-ZG09105, Tean, Amami-Oshima island, Kagoshima, Japan, depth of 35 m; C, CMNH-ZG 08523, Wase, Amami-Oshima island, Kagoshima, Japan, depth of 9 m; D, CMNH- ZG 07195, Ii-nanshi, Ogamijima island, Okinawa, Japan, depth of 10 m; E, KAUM-CN-11, Tean, Amami-Oshima island, Kagoshima, Japan, depth of 32 m; F, CMNH-ZG 09661, Tean, Amami-Oshima island, Kagoshima, Japan, depth of 32 m; G, KAUM-CN-12, Henoko, Okinawajima island, Okinawa, Japan, depth of 28 m; H, CMNH-ZG-09661, Henoko, Okinawajima island, Japan, depth of 28 m.
Fig. 1 in New Distributional Records of Three Species of Euphylliidae (Cnidaria, Anthozoa, Hexacorallia, Scleractinia) from the Ryukyu Islands, Japan
Fig. 1. Underwater appearance of living corals. A, in situ photograph of the colonies of Fimbriaphyllia paraancora (KAUM-CN-10) on the left and F.paradivisa (KAUM-CN-11) at Tean, Amami-Oshima island, Kagoshima, Japan, on 21 December 2017; B, an aggregation of F.paradivisa approximately 3–5 m in diameters on the muddy bottom in the usually turbid inner bay at a depth 28 m, Henoko, Okinawajima island, Okinawa, Japan, on 25 November 2010; C, extended polyps of F. paradivisa showing branching tentacles with spherical ends; D, extended polyps of F. paraancora showing tentacles with anchor-shaped tips; E, in situ photograph of Catalaphyllia jardinei (KAUM-CN-14) at Tean, Amami-Oshima island, Kagoshima, Japan, on 21 December 2017; F, polyps of C. jardinei showing small bubble-shaped tentacles at the edge of the oral disc.
Fig. 4 in New Distributional Records of Three Species of Euphylliidae (Cnidaria, Anthozoa, Hexacorallia, Scleractinia) from the Ryukyu Islands, Japan
Fig. 4. Specimens of Catalaphyllia jardinei preserved in the Smithsonian National Museum of Natural History (Photographs taken by Allison Becker) (USNM). A–B, corallite of USNM 1259568, collected at 52–55 m deep off Manza Horshoe Cliffs, Onna, Okinawajima island, Okinawa, Japan, on 21 December 1988, by Robert F. Bolland; C–D, corallite of USNM 94409, collected at 27 m deep off Nago City, Nago, Okinawajima island, Okinawa, Japan, on 21 February 1992, by R. F. Bolland.
Fig. 3 in New Distributional Records of Three Species of Euphylliidae (Cnidaria, Anthozoa, Hexacorallia, Scleractinia) from the Ryukyu Islands, Japan
Fig. 3. Corallum of Catalaphyllia jardinei currently reported from Amami-Oshima island, Japan. A, side view of the corallite of KAUM- CN-14; B, view from the top side of the corallite and the calice of KAUM-CN-14; C, side view of the corallite of CMNH-ZG 09662; D, view from the top side of the corallite and the calice of CMNH-ZG 0966 showing three-forked branching of the calice.
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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.