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152 results for “endemic frogs”
Figure 9 in Life History of Western Ghats endemic and threatened Anuran - Matheran leaping frog, (Indirana leithii) with notes on its feeding preferences
Figure 9. Hatchlings of Indirana leithii i.e. Stage 25 (live).
Figure 3 in Life History of Western Ghats endemic and threatened Anuran - Matheran leaping frog, (Indirana leithii) with notes on its feeding preferences
Figure 3. Femoral glands in (a) Indirana leithii and (b) Indirana chiravasi.
Figure 3 in Biogeographical analysis of Cameroonian puddle frogs and description of a new species of Phrynobatrachus (Anura: Phrynobatrachidae) endemic to Mount Oku, Cameroon
Figure 3. Holotype of Phrynobatrachus chukuchuku sp. nov. (MCZ A- 138127) in A, dorsal, B, ventral, C, lateral views. Typical gular coloration of P. chukuchuku sp. nov. exhibited by adult male (MCZ A- 138127; D), in comparison to adult female (MCZ A-138130; E). Scale bars = 1 mm.
Figure 1 in Biogeographical analysis of Cameroonian puddle frogs and description of a new species of Phrynobatrachus (Anura: Phrynobatrachidae) endemic to Mount Oku, Cameroon
Figure 1. Maximum likelihood phylogram inferred from mitochondrial nucleotide sequence data of 12S rRNA, valinetRNA, and 16S rRNA. Numbers above branches are nonparametric bootstrap proportions from PHYML analysis; numbers below branches are Bayesian posterior probabilities. 100% nonparametric bootstrap support and 1.00 posterior probability are indicated by asterisks (*).
Figure 2. A in Biogeographical analysis of Cameroonian puddle frogs and description of a new species of Phrynobatrachus (Anura: Phrynobatrachidae) endemic to Mount Oku, Cameroon
Figure 2. A, map depicting the south-west Cameroonian highlands, part of the Cameroon Volcanic Line, including Bioko Island (Equatorial Guinea) and the Obudu Plateau (Nigeria). Samples for biogeographical analyses were included from those highland regions indicated by asterisks (*). Biogeographical regions were delineated by both elevation (as indicated in legend) and geographical area (see Methods). B, dispersal of Phrynobatrachus into montane regions of the Cameroon Volcanic Line as reconstructed using DIVA analyses. Letters at nodes signify reconstructed elevation for ancestor: L, lowland (0–900 m); S, submontane (901–1800 m); M, montane (1801–3000 m). The mountain symbol represents the ancestral geographical distribution that includes only mainland highland regions: Mt Manengouba, Mt Nlonako, Bamenda-Banso Highlands (including Mt Bamboutos and Mt Oku), and Obudu Plateau. Asterisks denote species that are found at lowland elevations on the mainland but reach submontane elevations on Bioko Island. Phrynobatrachus werneri A represents MVZ 234835 (Cameroon: Northwest Region), whereas Phrynobatrachus werneri B represents MVZ 253334 (Nigeria: Cross River State).
Systematic assessment of the brown tree frog (Anura: Pelodryadidae: Litoria ewingi) reveals two endemic species in South Australia
<p>Supplementary files containing raw morphological and acoustic data.</p>
Figure 1 in Morphology, natural history and molecular identification of tadpoles of three endemic frog species of Nyctibatrachus Boulenger, 1882 (Anura: Nyctibatrachidae) from Central Western Ghats, India
Figure 1. (a) Sampling localities; (b) Myristica swamp forest, India.
Figure 5 in A new ancient lineage of frog (Anura: Nyctibatrachidae: Astrobatrachinae subfam. nov.) endemic to the Western Ghats of Peninsular India
Figure 5 Female of Astrobatrachus kurichiyana (reference collection CESF 2898). Female of Astrobatrachus kurichiyana (CESF 2898) as visualized via microCT-scanning with skull in dorsal (A), right lateral (B), and ventral (C) views, entire skeleton in dorsal view (D), right hand in dorsal view (E), pectoral girdle in ventral view (F), and pelvis in right lateral view (G). Note that distal extent of the fourth and fifth toes on both feet were truncated during CT-scanning. Abbreviations of anatomical terms are as follows: av, anterior vomer; clav, clavicle; cor, coracoid; np, neopalatine; omo, omosternum; pro, prootic; prsph, parasphenoid; pv, posterior vomer; scap, scapula; sph, sphenethmoid; sq, squamosal; xiph, xiphisternum. Full-size DOI: 10.7717/peerj.6457/fig-5
Figure 7 in A new ancient lineage of frog (Anura: Nyctibatrachidae: Astrobatrachinae subfam. nov.) endemic to the Western Ghats of Peninsular India
Figure 7 Type locality of Astrobatrachus kurichiyana. Most individuals were sighted in the montane forests except for a single individual in the grassland. Locality: Kurichiyarmala, Wayanad Plateau. Photo taken: June 2010. Photo Credit: S.P. Vijayakumar. Full-size DOI: 10.7717/peerj.6457/fig-7
Fig. 2 in Ancient divergence and recent population expansion in a leaf frog endemic to the southern Brazilian Atlantic forest
Fig. 2 Possible demographic models of the diversification of Phyllomedusa distincta in the southern Brazilian Atlantic forest used in the approximate Bayesian computation analysis. Model parameters: θ= 4 Neμ of ancestral (A), Northern (N), and Southern (S) groups (see text for details); m =2 Nm with arrow indicating direction of migration (IMa2
Fig. 1 in Ancient divergence and recent population expansion in a leaf frog endemic to the southern Brazilian Atlantic forest
Fig. 1 Geographic distribution of Phyllomedusa distincta in the Southern Brazilian Atlantic forest (a) and mitochondrial haplotype genealogy derived from ND2 sequences (b). Sampling localities and haplotype numbers are indicated (see Table 1). The circle area of each haplotype is proportional to its frequency. Mutations are edges. Percentages indicate pairwise distance between haplogroups. Brazilian states: SP São Paulo, PR Paraná, SC Santa Catarina, RS Rio Grande do Sul
FIGURE 1 in Tadpole of Hylodes fredi (Anura; Hylodidae), a frog endemic to an Atlantic Forest island (Ilha Grande, Rio de Janeiro State), Brazil
FIGURE 1.Tadpole of Hylodes fredi, stage 25, from Ilha Grande, State of Rio de Janeiro, Brazil. A—Tadpole of Hylodes fredi in life, B—oral disc (scale: 1 mm), C—lateral view (scale: 10 mm), D—dorsal view (scale: 10 mm).
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Allen Brain Atlas
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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.