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Image 1 in Additional record of Resplendent Bush Frog Raorchestes resplendens (Anura: Rhacophoridae) from the Western Ghats, India
Image 1. Map of Eravikulam NP. @ is the type locality and * is the present sight location of R. resplendens
Concatenated matrix from: Pristimantis trachyblepharis species group, a clade of miniaturized frogs: description of four new species and insights into the evolution of body size within the genus
<p>Matrix in nexus format that include sequences of <em>RAG1 </em>(1 - 600 bp), <em>16S</em> (601 - 1912 bp), and <em>12S</em> (1913 - 2819 bp) genes for 347 specimens belonging to the genus Pristimantis, in addition to several specimens of neotropical frog genera as outgroups.</p>
Photographs of live individuals from: Pristimantis trachyblepharis species group, a clade of miniaturized frogs: description of four new species and insights into the evolution of body size within the genus
<p>Photographs in jpg format of live individuals examined for morphological comparisons and descriptions. </p> <ul> <li><em>P. albujai</em> (photographs of 28 specimens).</li> <li><em>P. aquilonaris</em> (photographs of 12 specimens).</li> <li><em>P. nanus</em> sp. nov. (photographs of 7 specimens).</li> <li><em>P. pramukae </em>sp. nov. (photographs of 36 specimens).</li> <li><em>P. trachyblepharis</em> (photographs of 26 specimens).</li> <li><em>P. ujucami</em> sp. nov. (photographs of 27 specimens).</li> <li><em>P. ventristellatus</em> sp. nov. (photographs of 26 specimens).</li> </ul> <p>Available photographs of several Unconfirmed Candidate Species (UCS) are also provided.</p>
Figure 7 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 7. Chaparana aenea (Smith, 1922), MNHN 1999.5821, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: ventral view of chest and throat showing shape of patch of nuptial spines.
Figure 6 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 6. Plots of factors 1 and 2 of principal component analysis based on varimax rotated coefficients for logtransposed characters (25 measurements) for four adult specimens of Chaparana aenea (Smith, 1922) (see Table II) and six adult specimens of Chaparana unculuanus (Liu, Hu and Yang, 1960) (see Table IV).
Figure 3 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 3. Chaparana aenea (Smith, 1922). (a–c) MNHN 1989.0712, non-breeding adult male from Doi Inthanon, Chiangmai Province, Thailand: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) MNHN 1948.0139, holotype of Rana (Chaparana) fansipani Bourret, 1939, juvenile male from Fan Si Pan, Vietnam: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
Figure 4 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 4. (a–c) Chaparana aenea (Smith, 1922), MNHN 1999.5818, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) Chaparana unculuanus (Liu, Hu and Yang, 1960), MNHN 2001.0280, adult female from Jingdong Xian, Yunnan, China: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
Figure 1 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 1. Chaparana aenea (Smith, 1922). (a–c) BMNH 1947.2.2.31 (ex BMNH 1922.7.4.4, ex MAS 5821), holotype of Rana aenea Smith, 1922, juvenile female from Doi Chang, Thailand: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) MNHN 1999.5821, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
Figure 6 in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 6. Combat between males of Leptodactylus labyrinthicus. These males were in position to grasp each other. Observation in Uberlândia, MG, Brazil.
Figure 5 in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 5. Study plot, representing an area of reproduction of Leptodactylus labyrinthicus, in which foam nests and calling sites were mapped in the 2002–3 reproductive season. (Above) General aspect of the area; (below) schematic map showing the point of placement of the egg clutches (1–14) and the more frequently used calling sites (A, E and I). The numbering of the egg clutches follows the chronological order of deposition. Uberlândia, MG, Brazil.
Figure 4. A in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 4. A pair of Leptodactylus labyrinthicus in axillary amplexus within a basin, moments before initiating foam beating. Specimens from Uberlândia, MG, Brazil.
Figure 3. A in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 3. A foam nest (above) and an empty basin (below) of Leptodactylus labyrinthicus. Note that the foam nest is not in contact with the main water body. Observations made at Uberlândia, MG, Brazil.
Figure 2 in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 2. Differential growth of forearms in males and females of Leptodactylus labyrinthicus. ANCOVA F16,12520.7; P,0.001. Specimens from Uberlândia, MG, Brazil.
Figure 1 in On the natural history of the South American pepper frog, Leptodactylus labyrinthicus (Spix, 1824) (Anura: Leptodactylidae)
Figure 1. Size at adulthood of Leptodactylus labyrinthicus. Largest male, 158.5 mm SVL, smallest 99.9 mm SVL. Specimens from Uberlândia, MG, Brazil.
Figure 3 in Tadpole deposition behaviour in male stream frogs Mannophryne trinitatis (Anura: Dendrobatidae)
Figure 3. Histogram showing the number of tadpoles in different weight classes collected from pond B at Mount Saint Benedict. Newly deposited tadpoles are nearly all in the first size class (,0.045 g; see depositions in Table I).
Figure 1 in Tadpole deposition behaviour in male stream frogs Mannophryne trinitatis (Anura: Dendrobatidae)
Figure 1. Map of the Mount Saint Benedict site used for the deposition experiment. The numbers correspond to the tubs positioned at the site (see Table I for tub distances from the stream and altitude measurements).
Figure 2 in Tadpole deposition behaviour in male stream frogs Mannophryne trinitatis (Anura: Dendrobatidae)
Figure 2. Histogram showing the number of tadpole depositions in each size class at Mount Saint Benedict (with collection of tadpoles every other day, N522).
Neurogenomic divergence during speciation by reinforcement of mating behaviors in chorus frogs (Pseudacris) – De novo reference transcriptome: Assemblerd contigs and gene annotations
<p>Assembled contigs (Trinity) and gene annotations (Trinotate) of a reference transcriptome for the Upland Chorus Frog, <em>Pseudacris feriarum</em>. Data to assemble the contigs were obtained by sequencing four tissue types: Brain, eyes, testis, and somatic (liver/heart/lung/skin/muscle). Raw reads are stored in the NCBI-SRA database (BioProject PRJNA723357).</p>
Figure 4 in Ecologically-sustainable tree monocultures contribute to conservation of an Araucaria Forest endemic frog
Figure 4. Mean (¡SE) number of food items per stomach in each habitat. FO, Araucaria Forest; PA, Araucaria angustifolia plantation; PP, Pinus plantation; PE, Eucalyptus plantation.
Figure 5 in Ecologically-sustainable tree monocultures contribute to conservation of an Araucaria Forest endemic frog
Figure 5. Rarefaction curves of Physalaemus lisei diet, relating taxonomic richness to the number of individuals in each habitat. FO, Araucaria Forest; PA, Araucaria angustifolia plantation; PP, Pinus plantation; PE, Eucalyptus plantation. The vertical lines comprise the 95% confidence intervals.
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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.