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Data from: Genetic differentiation in a wide-ranging tropical seabird in the Indian Ocean is linked with oceanographic factors
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FIGURE 8 in A new deepwater gurnard of the genus Pterygotrigla (Scorpaeniformes: Triglidae) from the southwestern Indian Ocean
FIGURE 8. Pigmentation patterns of second dorsal fin of Pterygotrigla (Otohime). A: two rows of blackish blotches; B: one row of blackish blotches.
FIGURE 2B in A new deepwater gurnard of the genus Pterygotrigla (Scorpaeniformes: Triglidae) from the southwestern Indian Ocean
FIGURE 2B. Diagram to show dorsal measurements. A: total length; B: standard length; C: distance from snout to 2nd dorsal fin; D: distance from snout to 1st dorsal fin; E: distance between rostral spines; F: interorbital width; G: head length.
FIGURE 6 in A new deepwater gurnard of the genus Pterygotrigla (Scorpaeniformes: Triglidae) from the southwestern Indian Ocean
FIGURE 6. Pigmentation patterns of first dorsal fin of Pterygotrigla (Otohime). A: large black blotches present basally; B: blackish upper margin; C: small scattered blackish blotches.
FIGURE 4 in A new deepwater gurnard of the genus Pterygotrigla (Scorpaeniformes: Triglidae) from the southwestern Indian Ocean
FIGURE 4. Pterygotrigla (Otohime) madagascarensis sp. nov., SAIAB 203807, holotype, 109.0 mm SL. A: lateral view, B: dorsal view.
FIGURE 1 in A new deepwater gurnard of the genus Pterygotrigla (Scorpaeniformes: Triglidae) from the southwestern Indian Ocean
FIGURE 1. The holotype locality of each species. ●: P. (O.) amaokai; △: P. (O.) arabica; □: P. (O.) draiggoch; △: P. (O.) elicryste; △: P. (O.) hafizi; ▲: P. (O.) hemisticta; △: P. (O.) multipunctata; ■: P. (O.) soela; △: P. (O.) spirai; ▼: P. (O.) tagala; ○: P. (O.) urashimai; +: P. (O.) madagascarensis, sp. nov.
FIGURE 3. Syllis qamhiyn n in New species and records of the genus Syllis Savigny in Lamarck, 1818 (Annelida: Syllidae) from Socotra Archipelago (Indian Ocean)
FIGURE 3. Syllis qamhiyn n.sp., holotype (SMF 26713); A, falcigers, anterior body; B, aciculae, anterior body; C, falcigers, midbody; D, aciculae, midbody; E, falcigers, posterior body; F, aciculae, posterior body.
FIGURE 4. Syllis qamhiyn n in New species and records of the genus Syllis Savigny in Lamarck, 1818 (Annelida: Syllidae) from Socotra Archipelago (Indian Ocean)
FIGURE 4. Syllis qamhiyn n.sp., paratype (SMF 26714), before preparation for SEM; A, anterior margin of pharynx, showing pharyngeal tooth; B, complete specimen, dorsal view.
FIGURE 1 in Notes on some crinoid associated decapod crustaceans (Crustacea: Decapoda) of Lakshadweep Archipelago, Central Indian Ocean
FIGURE 1. Map showing the study area: Lakshadweep archipelago. Red dots indicate different sampling area and the adjacent Islands. Alphabets in parenthesis indicate corresponding species collected. a, f, k. Synalpheus stimpsonii (de Man, 1888); b, c, m, n. Synalpheus carinatus (de Man, 1888); d, e, g–j, l. Synalpheus comatularum (Haswell, 1882); o. Pontoniopsis comanthi Borradaile, 1915; p. Palaemonella pottsi (Borradaile, 1915); q. Permanotus purpureus (Gordon, 1934); r, s. Allogalathea elegans (Adams & White, 1848).
FIGURE 2 in Notes on some crinoid associated decapod crustaceans (Crustacea: Decapoda) of Lakshadweep Archipelago, Central Indian Ocean
FIGURE 2. Host crinoids of crustacean decapods collected from the Lakshadweep group of Islands. a. Comaster multifidus (Müller, 1841); b–c. Phanogenia gracilis (Hartlaub, 1893); d. Phanogenia distincta (Carpenter, 1888); e. Phanogenia gracilis (Hartlaub, 1893); f. Stephanometra indica (Smith, 1876); g. Phanogenia multibrachiata (Carpenter, 1888); h. Phanogenia gracilis (Hartlaub, 1893); i. Stephanometra tenuipinna (Hartlaub, 1890).
FIGURE 5 in A taxonomic revision of Gymnothorax undulatus (Anguilliformes: Muraenidae) in the Western Indian Ocean, with description of a new species
FIGURE 5. Gymnothorax elaineheemstrae (A) Holotype, SAIAB 86307, 624 mm TL, Cape Vidal, South Africa (Photo taken from the SAIAB Specify Image Collection Database); (B-C) SAIAB 83077, 267 mm TL, Aliwal Shoal, Scottburgh, South Africa (Photo by Phillip C. Heemstra) and (D-E) underwater photo (Photo by Dennis King).
FIGURE 3 in A taxonomic revision of Gymnothorax undulatus (Anguilliformes: Muraenidae) in the Western Indian Ocean, with description of a new species
FIGURE 3. Drawing of upper jaw and lower jaw tooth pattern of Gymnothorax elaineheemstrae (SAIAB 86307, 624 mm TL; ● represents the missing tooth).
FIGURE 2. A in A taxonomic revision of Gymnothorax undulatus (Anguilliformes: Muraenidae) in the Western Indian Ocean, with description of a new species
FIGURE 2. A scatter plot of Gymnothorax undulatus individuals from the WIO and extralimital regions along PC 1 and PC 2 from the principal component analysis of eight transformed morphometric measurements.
FIGURE 1 in A taxonomic revision of Gymnothorax undulatus (Anguilliformes: Muraenidae) in the Western Indian Ocean, with description of a new species
FIGURE 1. Sampling localities and defined geographic groupings of examined specimens identified as Gymnothorax undulatus.
Figure S1 in Supplementary information: Bat coronavirus phylogeography in the Western Indian Ocean
Figure S1. Mean CoV prevalence (± 95% confidence interval) as function of the bat family. Letters a–c above the bars refer to significantly different averages based upon a Pairwise test. Bars can have more than one letter to reflect the "overlap" between them.
Figure 9 in Bat coronavirus phylogeography in the Western Indian Ocean
Figure 9. Tanglegram representing host-virus co-evolution between bats of the Western Indian Ocean and their associated CoVs. Phylogeny of bats (left) was constructed with an alignment of 11 Cyt b sequences of 1,030 bp by Neighbor-Joining with 1,000 bootstrap iterations. Pruned phylogeny of Western Indian Ocean bats CoVs (right) was constructed with an alignment of 27 unique sequences of 393 bp from Western Indian Ocean bats CoVs, by Neighbor-Joining with 1,000 bootstrap iterations.
Figure 4 in Bat coronavirus phylogeography in the Western Indian Ocean
Figure 4. Detail of the α-CoV clade. Molossidae CoVs generated in the study are indicated in bold. This subtree is a zoom on Molossidae CoV clade from the tree depicted in Fig. 3. Bootstrap values>0.7 are indicated on the tree. Scale bar indicates mean number of nucleotide substitutions per site.
Figure 7 in Bat coronavirus phylogeography in the Western Indian Ocean
Figure 7. Detail of the β-C CoV clade. CoVs generated in the study are indicated in bold. This sub-tree is a zoom on β-C CoV clade from the tree depicted in Fig. 3. Bootstrap values>0.7 are indicated on the tree. Scale bar indicates mean number of nucleotide substitutions per site.
Figure 2 in Bat coronavirus phylogeography in the Western Indian Ocean
Figure 2. Mean CoV prevalence (±95% confidence interval) in bats in the Western Indian Ocean. Pairwise test; ***p <0.001; NS: p> 0.05, not significant.
Figure 3 in Bat coronavirus phylogeography in the Western Indian Ocean
Figure 3. Maximum Likelihood (ML) consensus tree derived from 202 coronavirus (CoV) RNA-dependent RNA-polymerase partial nucleotide sequences (393 bp). Colored circles at the end of branches indicate bat family origin. Sequences in bold refer to bat CoVs detected in this study. Bootstrap values>0.7 are indicated on the tree. Scale bar indicates mean number of nucleotide substitutions per site. The tree was generated with the General Time Reversible evolutionary model (GTR + I + Г, I = 0.18, α = 0.64) and 1,000 bootstrap replicates.
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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)
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DANDI Archive for NWB datasets
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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.