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1,473 results for “Geographic distribution”
Figure 1 in A new species of Himalayapotamon Pretzmann, 1966 (Crustacea: Brachyura: Potamidae) marking the westernmost distribution of the genus, with notes on its geographical range evolution
Figure 1. Occurrence of the currently recognised species of the genus Himalayapotamon; based on different authors (Alcock 1909, 1910; Pretzmann 1966b; Brandis et al. 2000; Brandis 2001; Brandis and Sharma 2005; Mitra and Valarmathi 2017; Pati and Singh 2017). The two insets enlarge the sampling sites between Ravi and Satluj rivers (left), and between Gandak and Bagmati rivers (right). The dash-dot line indicates the drainage divide between Indus and Ganges; the dashed line the palaeo-divide at 5 Ma according to Clift and Blusztajn (2005); and the dotted line the palaeo-divide under the hypothesis that the range of Himalayapotamon reflects the palaeo-Ganges drainage.
Figure 2 in A new species of Himalayapotamon Pretzmann, 1966 (Crustacea: Brachyura: Potamidae) marking the westernmost distribution of the genus, with notes on its geographical range evolution
Figure 2. Himalayapotamon. robertsianum sp. nov., holotype male (SMF 24731). (a) Carapace; (b) sternum and pleon (scale = 2 cm); (c) first gonopod, dorsal; (d) first gonopod, ventral (scale = 5 mm).
Figure 3 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 3. Potential geographic distribution predicted by DOMAIN model to Temnomastax ricardoi Descamps, 1973 (blue), and Temnomastax tigris (Burr, 1899) (green). Darkest regions represent higher probabilities of occurrence than clearest regions. (■) Temnomastax ricardoi Descamps, 1973 records; (▲) Temnomastax tigris (Burr, 1899) records.
Figure 2 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 2. Potential geographic distribution predicted by DOMAIN model to Temnomastax hamus Rehn and Rehn, 1942 (green). Darkest regions represent higher probabilities of occurrence than clearest regions. On the left is marked the Andes in red, orange and yellow. (●) species records.
Figure 1 in Potential geographic distribution niche modeling based on bioclimatic variables of three species of Temnomastax Rehn and Rehn, 1942 (Orthoptera: Eumastacidae)
Figure 1. Male specimens of some studied species. (a) Temnomastax hamus Rehn and Rehn, 1942 from Minas Gerais, Brazil; (b) Temnomastax ricardoi Descamps, 1973 and (c) Temnomastax tigris (Burr, 1899) from Mato Grosso do Sul, Brazil (photos used with permission of the authors: Marcos Cesar Campis (a) and Paulo Robson de Souza (c).
Figure 5 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 5. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): (a) left maxilla 1; (b) spine teeth of maxilla 1 outer plate (enlarged), a distal margin of right palp mandibular (enlarged); (c) left mandible; (d) maxilla 2; (e) upper lip; (f) lower lip. Scale bar: a, c = 0.9 mm; d = 0.7 mm; e = 0.2 mm; f = 1.2 mm.
Figure 7 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 7. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): (a) pereopod 3; (b) pereopod 4; (c) pereopod 5; (d) pereopod 6; (e) pereopod 7. Scale bar: a = 2.4 mm; b, c = 3.1 mm; d, e = 3.2 mm.
Figure 6 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 6. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): (a) maxilliped; (b) inner plate of same (tip without setae); (c) telson (tip enlarged); (d) uropod 3; (e) uropod 2; (f) uropod 1. Scale bar: a = 0.8 mm; c = 1.2 mm; d = 1.6 mm; e, f = 2.0 mm.
Figure 3 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 3. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): (a) antenna 1; (b) antenna 2; (c) ventral view of head. Scale bar: a = 0.5 mm; b = 0.7 mm.
Figure 4 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 4. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): (a) gnathopod 1; (b) gnathopod 1 propodus and dactylus (tip enlarged); (c) gnathopod 2; (d) gnathopod 2 propodus (tip enlarged) and dactylus. Scale bar = 1.8 mm.
Figure 2 in Stephonyx californiensis sp. nov. (Amphipoda: Lysianassoidea: Uristidae), a new bathyal scavenger species from the Central Gulf of California, Mexico, and comments on the bathymetric and geographic distribution of the Stephonyx species group
Figure 2. Stephonyx californiensis sp. nov., holotype male (22.3 mm length): habitus. Setae on antennae and uropods not included. Scale bar = 4.0 mm.
Figure 3 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 3. Individual tracks of Lagenophrys discoidea (a); L. orchestiae (b); L. eupagurus (c); L. cochinensis (d); L. crutchfieldi (e).
Figure 6 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 6. Generalized tracks and nodes: Euroamerican generalized track (1); American generalized track (2); Caribbean generalized track (3); Tasmanian generalized track (4); South American generalized track (5). The nodes are indicated with 'x' enclosed by an open circle.
Figure 5 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 5. Individual tracks of Lagenophrys maxillaris (a); L. nassa (b); L. labiata (c); L. matthesi (d); L. vaginicola (e); L. monolistrae (f).
Figure 1 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 1. Individual tracks of Lagenophrys johnsoni (a); L. dennisi (b); L. patina (c); L. lenticula (d); L. anticthos (e); L. aegleae (f); L. callinectes (g).
Figure 4 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 4. Individual tracks of Lagenophrys limnoria (a); L. aselli (b); L. leniusculus (c); L. platei (d); L. tattersalli (e); L. ampulla (f).
Figure 2 in Track analysis and geographic distribution of some Lagenophrys Stein, 1852 (Protozoa: Ciliophora: Peritrichia) species
Figure 2. Individual tracks of Lagenophrys awerinzewi (a); L. turneri (b); L. petila (c); L. engaei (d).
Figure 10 in On the morphology and geographical distribution of some problematic South Palearctic Cyclops (Copepoda: Cyclopidae)
Figure 10. Cyclops abyssorum divergens (female, syntypes, Iran): (A) labrum; (B) antennal coxobasis and enp 1, caudal; (C) antennular segments 12–14; (D) mandible [Md] and maxillula [Mxl], frontal, long setules of proximalmost seta of maxillular palp arrowed; (E) syncoxa of maxilliped, frontal, membraneous element arrowed; (F) outline of cephalothorax and pedigers 2–5. All drawings show KBIN: COP7146. Scales: 50 Mm.
Figure 7 in On the morphology and geographical distribution of some problematic South Palearctic Cyclops (Copepoda: Cyclopidae)
Figure 7. Cyclops abyssorum divergens (female, genital double-somite, ventral), scanning electron micrographs: (A) Richmond Park, UK; (B–D) Demirköprü, Turkey: (B) ♀-1; (C) ♀-2, copulatory pore arrowed; (D) ♀-2, cuticular ridges next to copulatory pore.
Figure 6 in On the morphology and geographical distribution of some problematic South Palearctic Cyclops (Copepoda: Cyclopidae)
Figure 6. Cyclops abyssorum divergens (female), scanning electron micrographs: (A) pediger 5, lateroventral lobe arrowed; (B) antennular segments 12–14, aesthetasc arrowed; (C) maxillular palp, large spinules arrowed; (D) P1, frontal, setules on medial spine arrowed. (A–C) show specimen from Richmond Park, UK, (D) shows specimen from Demirköprü, Turkey.
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.