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4,937 results for “Endemic species”
Figure 3 in Albertine Rift Valley endemics: three new species of freshwater crabs (Brachyura: Potamoidea: Potamonautidae) from Uganda, the Democratic Republic of the Congo, and Rwanda
Figure 3. Potamonautes rwenzori sp. nov., holotype, adult male, CW 24.3 mm, Maya Moto, Rwenzori Mountains, Democratic Republic of the Congo (NHMUK 2018. 6). (a) Whole animal, dorsal view; (b) whole animal, ventral view. Photographs by Phillip Crabb, Natural History Museum, UK.
Figure 4 in Albertine Rift Valley endemics: three new species of freshwater crabs (Brachyura: Potamoidea: Potamonautidae) from Uganda, the Democratic Republic of the Congo, and Rwanda
Figure 4. Frontal view of carapace. (a) Potamonautes bwindi sp. nov., holotype, adult male, CW 20.2 mm, Bwindi Impenetrable Forest, Uganda (NHMUK 2018. 1); (b) Potamonautes kivu sp. nov., holotype, adult male, CW 24.9 mm, Gisenyi, Lake Kivu, Rwanda (NHMUK reg. 2018. 5); (c) Potamonautes rwenzori sp. nov., holotype, adult male, CW 24.3 mm, Maya Moto, Rwenzori Mountains, Democratic Republic of the Congo (NHMUK 2018. 6). Photograph c by Phillip Crabb, Natural History Museum, UK.
Figure 2 in Albertine Rift Valley endemics: three new species of freshwater crabs (Brachyura: Potamoidea: Potamonautidae) from Uganda, the Democratic Republic of the Congo, and Rwanda
Figure 2. Potamonautes kivu sp. nov., holotype, adult male, CW 24.9 mm, Gisenyi, Lake Kivu, Rwanda (NHMUK reg. 2018. 5). (a) Whole animal, dorsal view; (b) whole animal, ventral view.
Figure 1 in Albertine Rift Valley endemics: three new species of freshwater crabs (Brachyura: Potamoidea: Potamonautidae) from Uganda, the Democratic Republic of the Congo, and Rwanda
Figure 1. Potamonautes bwindi sp. nov., holotype, adult male, CW 20.2 mm, Bwindi Impenetrable Forest, Uganda (NHMUK 2018. 1). (a) Whole animal, dorsal view; (b) whole animal, ventral view.
Figure 8 in Albertine Rift Valley endemics: three new species of freshwater crabs (Brachyura: Potamoidea: Potamonautidae) from Uganda, the Democratic Republic of the Congo, and Rwanda
Figure 8. Distribution map showing the known localities of Potamonautes bwindi sp. nov. (black circle, not shown to scale); Potamonautes kivu sp. nov. (black star, not shown to scale); Potamonautes rwenzori sp. nov. (black squares, not shown to scale) in Uganda and the Democratic Republic of the Congo. For exact localities see text.
Figure 4 in Cambarus loughmani, a new species of crayfish (Decapoda: Cambaridae) endemic to the pre-glacial Teays River Valley in West Virginia, USA
Figure 4. Cambarus loughmani sp. nov.; all taken from holotype male, Form I (NCSM 90082), except E and F from morphotype male, Form II (NCSM 90084), and I from allotype female (NCSM 90083): (a) lateral aspect of carapace; (b–d) mesial and lateral aspect of Form I male gonopod; (e–f) mesial and lateral aspect of Form II male gonopod; (g) ventral aspect of epistome; (h) dorsal aspect of carapace; (i) ventral aspect of annulus ventralis; (j) dorsal aspect of the antennal scale; (k) dorsal aspect of distal podomere of right cheliped. Note that the red lining of the rostrum and purpleish hue of the animal during the time of the photo are a byproduct of recent preservation in ethanol and colours in this plate are not representative of those in life. Photo plate by Dr Guenter Schuster.
Figure 3 in Cambarus loughmani, a new species of crayfish (Decapoda: Cambaridae) endemic to the pre-glacial Teays River Valley in West Virginia, USA
Figure 3. Dorsal view of a female specimen of Cambarus loughmani collected from the type locality, burrows adjacent to Little Island Creek, Lincoln County, West Virginia, displaying typical life colours for the species. Photo by Dr Guenter Schuster.
Figure 5 in Cambarus loughmani, a new species of crayfish (Decapoda: Cambaridae) endemic to the pre-glacial Teays River Valley in West Virginia, USA
Figure 5. Known range of Cambarus loughmani in West Virginia with sites designated by Jezerinac et al. (1995) combined with those collected during the study, and showing introduced population present at Chief Logan State Park.
Figure 1. Sheared principal component analysis plot depicting morphometric variation among Cambarus aff. dubius, C. pauleyi, C in Cambarus loughmani, a new species of crayfish (Decapoda: Cambaridae) endemic to the pre-glacial Teays River Valley in West Virginia, USA
Figure 1. Sheared principal component analysis plot depicting morphometric variation among Cambarus aff. dubius, C. pauleyi, C. loughmani, and nominate C. dubius.
Figure 2 in Cambarus loughmani, a new species of crayfish (Decapoda: Cambaridae) endemic to the pre-glacial Teays River Valley in West Virginia, USA
Figure 2. Bayesian phylogenetic tree based on partial sequences from the mitochondrial COI gene that was generated using the software program MrBayes and using the HKY+G model of sequence evolution. The tree depicts relationships among Cambarus loughmani sp. nov. (in bold) and several other species formerly considered part of the C. dubius species complex. Also represented are other related burrowing crayfish from the genus Cambarus as well as additional taxa from two other genera that are included as outgroups. Numbers at the nodes of the tree indicate Bayesian posterior probabilities.
Figure 5 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 5. Anyllis tiegsi. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 4 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 4. Anyllis pseudotiegsi sp. nov. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 2 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 2. Anyllis gibbosus sp. nov. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.5 mm; C–G 0.125 mm.
Figure 3 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 3. Anyllis leiala. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 1 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 1. Anyllis species, dorsal and lateral habitus. (A–D) Anyllis gibbosus sp. nov.; (A, B) male, paratype; (C, D) female, paratype, Australia: Queensland; (E, F) Anyllis leiala, male, Australia: New South Wales; (G, H) Anyllis pseudotiegsi sp. nov., male paratype, Australia: Tasmania; (I, J) Anyllis spinostylus, male paratype, Australia: Tasmania; (K, L) Anyllis tiegsi, male, Australia: New South Wales.
FIGURE 4 in Re-validation and re-description of an endemic and threatened species, Aphanius pluristriatus (Jenkins, 1910) (Teleostei, Cyprinodontidae), from southern Iran
FIGURE 4. Geographic distribution of the studied Aphanius species in southern Iran and location of Fasa, which is near the type locality of A. pluristriatus. The ancient Paleo-Kor River (dotted line) and the present Kor River were connected until the end of the Quaternary. Then the connection was blocked and the endorheic Kor Basin with the Bakhtegan and Tashk Lakes developed (see text for details and references). Source of map: Google Earth; modified.
FIGURE 2 in Re-validation and re-description of an endemic and threatened species, Aphanius pluristriatus (Jenkins, 1910) (Teleostei, Cyprinodontidae), from southern Iran
FIGURE 2. Group centroids (± S.D.) of discriminant function analyses (DFAs) for separation of the four studied Aphanius species based on all morphometric and meristic characters of males (a) and females (b). Numbers of flank bars are excluded from this analysis.
FIGURE 3 in Re-validation and re-description of an endemic and threatened species, Aphanius pluristriatus (Jenkins, 1910) (Teleostei, Cyprinodontidae), from southern Iran
FIGURE 3. Photos of the studied Aphanius species from southern Iran: a-b, A. pluristriatus (a, female; b, male); c-d, A. farsicus (c, female, d, male); e-f, A. sophiae (e, female, f, male).
FIGURE 14 in <p><strong>Systematic review of diplommatinid land snails (Caenogastropoda, Diplommatinidae) endemic to the Palau Islands. (1) Generic classification and revision of <em>Hungerfordia</em> </strong><br /><strong>species with highly developed axial ribs</strong></p>
FIGURE 14. Hungerfordia expansilabris sp. nov. (A1–A4) A topotypic paratype, B0480a; (B) columella (left lateral view), a paratype from Loc. BA6-1, B0667a; (C) axial ribs above the aperture after removal of the parietal margin of inner peristome, (D1) sculpture on the penultimate whorl, and (D2) sculpture on the body whorl of a topotypic paratype (B0480a); (E) umbilical view of a paratype after removal of the spiny ribs and the outer peristome, only the last whorl shown, Loc. BA6-1, B0667b; (F1–F5) holotype, B0480T; (G) a paratype from Loc. BA5-4, B0472; (H) a paratype from Loc. BA6-1, B0667c; (I1, I2) outer surface, and (I3, I4) inner surface of operculum, a topotypic paratype, B0480. Scale bars, 1mm (A–H), 0.5 mm (I). All specimens, UMUTZ-MG.
FIGURE 29 in <p><strong>Systematic review of diplommatinid land snails (Caenogastropoda, Diplommatinidae) endemic to the Palau Islands. (1) Generic classification and revision of <em>Hungerfordia</em> </strong><br /><strong>species with highly developed axial ribs</strong></p>
FIGURE 29. Shell size and shape variation among Hungerfordia species with highly developed ribs. (A) H. triplochilus sp. nov., holotype; (B) H. expansilabris sp. nov., holotype; (C) H. nudicollum sp. nov., holotype; (D) H. echinata echinata sp. et subsp. nov., holotype; (E) H. echinata tubulispina subsp. nov., holotype; (F1) H. lamellata (Crosse, 1866), B0199a; (F2) H. lamellata (Crosse, 1866), B0282b; (G) H. alata (Crosse, 1866), B0446; (H) H. pteropurpuroides sp. nov., holotype; (I1) H. subalata sp. nov., paratype (B0655); (I2) H. subalata sp. nov., holotype; (J) H. papilio stenoptera subsp. nov., holotype; (K) H. papilio papilio sp. et subsp. nov., holotype; (L) H. goniobasis dmasechensis subsp. nov., holotype; (M) H. goniobasis goniobasis sp. et subsp. nov., holotype; (N) H. elegantissima sp. nov., holotype; (O1) H. pelewensis Beddome, 1889, B0542; (O2) H. pelewensis Beddome, 1889, B0383. Scale bar, 1mm. All specimens, UMUTZ-MG.
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.