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2,581 results for “amphibians”
Figure 2 in Osteology of the Permian temnospondyl amphibian Glanochthon lellbachae and its relationships
Figure 2. Type specimen of Glanochthon lellbachae (Krätschmer, 2006) comb. nov. (NHMM 2006/14). (a, c) Close-up of skull roof and (b) complete skeleton.
259. Pristimantis lassoalcalai. Female paratype MHNLS 18877 in Catalogue of the amphibians of Venezuela: Illustrated and annotated species list, distribution, and conservation
259. Pristimantis lassoalcalai. Female paratype MHNLS 18877. Cerro Las Antenas, Sierra de Perijá, Zulia. Photo: Pablo Velozo.
267 in Catalogue of the amphibians of Venezuela: Illustrated and annotated species list, distribution, and conservation
267. Pristimantis nubisilva. Amplexus. Southern slopes of Cerro Humo, Península de Paria, Sucre. Photo: César Barrio-Amorós.
171B in Catalogue of the amphibians of Venezuela: Illustrated and annotated species list, distribution, and conservation
171B. Scinax fuscomarginatus. Amplexus. North of Santa Elena de Uairén, Bolívar. Photo: César Barrio-Amorós.
139B in Catalogue of the amphibians of Venezuela: Illustrated and annotated species list, distribution, and conservation
139B. Boana xerophylla. Day color. Imataca Forestal Reserve, Delta Amacuro. Photo: César Barrio-Amorós.
Fig. 17 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 17. Adult male (above) and female (below) Hyperolius raymondi from river crossing before Samboano village. Photo by Luke Verburgt.
Fig. 11 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 11. Pipids (Hymenochirus, Xenopus), ranids (Amnirana), and a rhacophorid (Chiromantis). (A) Hymenochirus cf. boettgeri (male). (B) H. cf. boulengeri (male). (C) Xenopus pygmaeus (female). (D) X. pygmaeus, tadpole. (E) Amnirana cf. albolabris (male). (F) Amnirana cf. albolabris, dark morph with contrasting color pattern (male). (G) A. lepus (male). (H) Chiromantis cf. rufescens (male).
Fig. 2 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 2. Habitats of Kokolopori. (A) Rural complexes are common along pathways (e.g., habitat of Ptychadena sp. aff. mascareniensis when puddles are formed after rains). (B) Herbaceous habitat and shrubs along a small stream in disturbed forest (e.g., Hyperolius phantasticus boulengeri, Congolius robustus, Leptopelis ocellatus schiotzi, and Ptychadena perreti). (C) Disturbed primary forest (e.g., Arthroleptis phrynoides, and A. tuberosus procterae). (D) Small stream in primary dense moist forest (e.g., Ptychadena aequiplicata, Sclerophrys cf. funerea, and S. sp. aff. camerunensis 2). (E) Primary forest along the Luo (= Maringa) River. (F) Flooded forest near the Luo River (e.g., Aubria masako, Hymenochirus cf. boettgeri, and Xenopus pygmaeus). (G–H) Bonobo (Pan paniscus), the umbrella species of the Kokolopori Bonobo Nature Reserve facilitating the conservation of the whole ecosystem.
Fig. 18 in The Amphibian Tree Of Life
Fig. 18. Tree of Pelobatoidea and outgroups of GarcíaParís et al. (2003) based on 1,000 bp mitochondrial genes: cytochrome c and 16S rRNA. The sequences were aligned using Clustal X (
Fig. 17 in The Amphibian Tree Of Life
Fig. 17. Tree of amphibians provided by San Mauro et al. (2005). This tree reflects a likelihood analysis of 1,368 bp of the nuclear proteincoding gene RAG1, assuming the GTR I substitution model (as suggested by ModelTest v. 3.6; Posada and Crandall, 1998). Sequence
Fig. 61. Part 6 in The Amphibian Tree Of Life
Fig. 61. Part 6 of anurans from the general tree (fig. 50 [insert]): Microhylidae.
Fig. 14 in The Amphibian Tree Of Life
Fig. 14. Narrative tree of relevant anuran taxa by Ford and Cannatella (1993). A branch Hylidae 1 Pseudidae in the original figure is collapsed per errata distributed with reprint. An was used by these authors to denote a metataxon, and quotation marks to denote nonmonophyly
Fig. 36 in The Amphibian Tree Of Life
Fig. 36. Maximum likelihood tree of exemplars of Ranoidea, with a focus on African taxa, by der Meijden et al. (2005), based on mt DNA (12S and 16S rRNA) and nu DNA (RAG1, rhodopsin), for 2,995 bp of sequence. Alignment was made using ClustalW (Thompson et al., with costs not disclosed and gaps and highly variable sites excluded from analysis. The model
Fig. 5 in The Amphibian Tree Of Life
Fig. 5. Tree of salamander families from Gao
Fig. 48 in The Amphibian Tree Of Life
Fig. 48. Consensus of weighted parsimony trees of Rhacophoridae suggested by J.A. Wilkinson al. (2002), with their subfamily taxonomy on right. (This is Mantellidae and Rhacophoridae of authors.) The tree was based on 2kb (of 12S and 16S mt rRNA as well as tRNAVal). Alignment manual, guided by models of secondary structure with ambiguously aligned segments discarded analysis, transversions were weighted twice transitions. Whether reatment of gaps were treated as dence of relationship or as missing data was not stated. Chirixalus eiffingeri was placed in
Fig. 54. Part 1 in The Amphibian Tree Of Life
Fig. 54. Part 1 of anurans from the general tree (fig. 50 [insert]): nonneobatrachian frogs.
Fig. 47. A in The Amphibian Tree Of Life
Fig. 47. A, Rhacophorid and mantellid tree of Liem (1970) based on 36 direct to dendritic mor
Fig. 3 in The Amphibian Tree Of Life
Fig. 3. Currently accepted view of relation
FIGURE 8 in A Checklist of the Amphibians and Reptiles of Afghanistan*
FIGURE 8: Dried individuals of Paralaudakia caucasia sold as medicine in a Chinese market in Kabul. Photo by A. Dittmann.
FIGURE 34 in Amphibians of the Philippines, Part I: Checklist of the Species
FIGURE 34. Photographs in life of A) Platymantis negrosensis (Ceratobatrachidae), B) Platymantis paengi (Ceratobatrachidae), C) Platymantis polillensis (Ceratobatrachidae), D) Platymantis pygmaeus (Ceratobatrachidae), E) Platymantis rabori (Ceratobatrachidae), F) Platymantis sierramadrensis (Ceratobatrachidae), G) Platymantis spelaeus (Ceratobatrachidae), and H) Platymantis subterrestris (Ceratobatrachidae). Photographs copyright Rafe M. Brown (D, F, H) Cameron D. Siler (A, B, E, G), and Luke Welton (C).
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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
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.