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557 results for “Caudata”
Herbarium specimen image of Stigmatopteris caudata, part of the collection of Finnish Museum of Natural History LUOMUS, University of Helsinki
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
FIGURE 6 in Taxonomic revision of the moss salamander Nototriton barbouri (Schmidt) (Caudata: Plethodontidae), with description of two new species from the Cordillera Nombre de Dios, Honduras
FIGURE 6. Digital radiographs of the holotypes of Nototriton nelsoni (A; USNM 578300) and N. oreadorum (B; USNM 497552).
FIGURE 8 in ISABELA CARVALHO BRCKO, MARINUS STEVEN HOOGMOED & SELVINO NECKEL- OLIVEIRA (2013) Taxonomy and distribution of the salamander genus Bolitoglossa Duméril, Bibron & Duméril, 1854 (Amphibia, Caudata, Plethodontidae) in Brazilian Amazonia. Zootaxa, 3686 (4), 401-431.
FIGURE 8. Distribution map of Bolitoglossa paraensis and Bolitoglossa tapajonica sp. nov. Type-localities: B. paraensis (Santa Isabel do Pará, black cross), B. tapajonica sp. nov. (Juruti, black triangle). Other localities: B. paraensis (open crosses: 1 Primavera, 2 Bragança, 3 Ilha de Mosqueiro, 4 Santa Bárbara do Pará, 5 Benevides, 6 Belém, 7 Ourém, 8 Barcarena, 9 Mojú, 10 Tailândia); B. tapajonica sp. nov. (open triangles: 11 Juruti localities, 12 Vitória do Xingú, 13 Itaituba localities. Specimen from Serra do Tumucumaque, Amapá indicated with asterisk. Specimens from Canindé, Pará indicated with circle with cross inside.
Fig. 2 in Assessing The Abundance Of Caucasian Salamander, Mertensiella Caucasica (Caudata, Salamandridae), With N-Mixture Model In Northeastern Anatolia
Fig. 2. The average abundance of Caucasian salamanders from the East Black Sea Region, Turkey. X-axis shows the sampling plots number in each city; Y-axis shows the estimated population size.
Fig. 4 in The Development Of Olfactory Organ Of Lissotriton Vulgaris (Amphibia, Caudata)
Fig. 4. Cross-section of mature L. vulgaris head at the level of the anterior part of the nasal cavity. Legends: oc — nasal cavity; oe — olfactory epithelium; bc — buccal cavity; ld — lateral diverticulum; re — respiratory epithelium; nac — olfactory capsule; img — intermaxillary gland; Bg — Bowman's glands.
Fig. 5 in The Development Of Olfactory Organ Of Lissotriton Vulgaris (Amphibia, Caudata)
Fig. 5. Cross-section of mature L. vulgaris head at the level vomeronasal gland. L e g e n d s: oc — nasal cavity; oe — olfactory epithelium; ld — lateral diverticulum; re — respiratory epithelium; nac — olfactory capsule; nld — nasolacrimal duct, img — intermaxillary gland; Bg — Bowman's glands.
Fig. 6 in The Development Of Olfactory Organ Of Lissotriton Vulgaris (Amphibia, Caudata)
Fig. 6. Temporal morphogenesis of the L. vulgaris olfactory analyzer structures. L e g e n d s: OP — olfactory placode; OPI — olfactory pits; OS — olfactory sac; NC — nasal cavity; VNO — vomeronasal organ; RE — respiratory epithelium; VNG — vomeronasal gland; BG — Bowman's glands.
Fig. 3 in The Development Of Olfactory Organ Of Lissotriton Vulgaris (Amphibia, Caudata)
Fig. 3. Cross-section of the L. vulgaris larva head at the level of the nasal cavity (a) and vomeronasal organs (b): a — stage 47; b — stage 52. L e g e n d s: oc — nasal cavity; oe — olfactory epithelium; bc — buccal cavity; vno — vomeronasal organ; ct — trabecular lamina.
Fig. 1 in The Development Of Olfactory Organ Of Lissotriton Vulgaris (Amphibia, Caudata)
Fig. 1. Cross-section of the L. vulgaris larvae head at the level of the olfactory placode (a) and choanae (b): a — stage 33; b — stage 41. L e g e n d s: op — olfactory pits; e — eyes; nt — neural tube; nec — neurocoel; p — olfactory placode; ch — choanae; oe — olfactory epithelium; bc — buccal cavity; b — brain.
Fig. 6 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 6. In-life photographs of variations within Bolitoglossa bolanosi sp. nov. (A) Paratopotype male subadult UCR 22966, (B) paratype juvenile UCR 24247, (C) paratype adult female UCR 22421, and (D) paratype adult female UCR 24245. Photographs A and C by Erick Arias, B and D by Omar Zúñiga.
Fig. 5 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 5. Dorsal views of the hand and foot of the holotypes of (A–B) Bolitoglossa bolanosi sp. nov. (UCR 22965) and (C–D) B. pesrubra in preservation. Photograph by Erick Arias.
Fig. 4 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 4. Holotype of Bolitoglossa bolanosi sp. nov. (UCR 22965) in life on a white background. Photograph by Erick Arias.
Fig. 1 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 1. (A) Map showing the known populations of the species within the Bolitoglossa subpalmata species group. (B) Map showing the localities for B. bolanosi sp. nov. and the species close to it in the páramo of the Cordillera de Talamanca. The open shapes indicate the historical data and the solid shapes indicate the localities with molecular data included herein.
Fig. 2 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 2. Bayesian phylogenetic inference shows the relationships of the Bolitoglossa subpalmata species group based on the 16S and cyt b mitochondrial DNA gene fragments. Bootstrap proportions from maximum likelihood are shown above the branches, and numbers below the branches are posterior probabilities (multiplied by 100) from the MrBayes analysis. The scale bar refers to the estimated substitutions per site. The support values of any node within the species are not shown. The asterisks represent support>99. NV = no voucher.
Fig. 3 in A new species of salamander (Caudata: Plethodontidae: Bolitoglossa) from the subalpine rain páramo of the Cordillera de Talamanca, Costa Rica
Fig. 3. Linear discriminant analysis shows the morphological separation between the new species and the two species close to it.
Fig. 3 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 3. Predicted distribution of Salamandra infraimmaculata under current climatic conditions. Warm colors (red and yellow) show suitable habitats, whereas the blue color represents unsuitable habitats for S. infraimmaculata.
Fig. 2 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 2. Distribution patterns of Salamandra infraimmaculata throughout southern Anatolia together with the new locality record.
Fig. 1 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 1. Samples of Salamandra infraimmaculata captured from the new locality: (A) male and (B) female.
Fig. 4 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 4. The marginal response curves of S. infraimmaculata to (A) Minimum Temperature of Coldest Month (Bio6), (B) Mean Temperature of Wettest Quarter (Bio8), and (C) Precipitation of Warmest Quarter (Bio18). The red lines and blue shading respectively show the mean responses of the 30 replicate MaxEnt runs and the mean plus/minus one standard deviation.
Fig. 1 in Two Records of large specimens of Fire Salamander Salamandra salamandra (Linnaeus, 1758) (Amphibia: Caudata) in Bulgaria
Fig. 1. The observed adult female specimens of Fire Salamander (Salamandra salamandra) and their microhabitats. A&B – Chetirka River, 24.02.2015; C&D – Sheytanski Andak Stream, 03.03.2015.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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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.