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256 results for “Salamandridae”
Fig. 1 in New sites of the endangered Marmaris Salamander, Lyciasalamandra flavimembris (Mutz and Steinfartz 1995), (Caudata: Salamandridae) from Muğla, Turkey
Fig. 1. Distribution of the Marmaris Salamander. Solid red circle denotes known sites of L. f. flavimembris, solid red star shows new recorded locations, and yellow squares show known sites of L. f. ilgazi. Previously recorded localities of L. f. flavimembris, and L. f. ilgazi was noted by Baran and Atatür 1986, Başoğlu et al. 1994, Mutz and Steinfartz 1995, Üzüm et al. 2015, and Göçmen and Karış 2017.
Fig. 3. Specimens from new sites. A in New sites of the endangered Marmaris Salamander, Lyciasalamandra flavimembris (Mutz and Steinfartz 1995), (Caudata: Salamandridae) from Muğla, Turkey
Fig. 3. Specimens from new sites. A. the right-side female, the middle male, left side juvenile from Arıcılar [1]; B. A male from Turunç [2]; C. A male from Selimiye [4] D. A juvenile from Söğütköy [5].
Figure 6 in Reproductive biology of Tylototriton yangi (Urodela: Salamandridae), with suggestions on its conservation
Figure 6. Habitat destruction of Tylototriton yangi in southern Yunnan Province, China. a) Coal mining site at Yangjie, Mengzi, Yunnan Province, China; b) illegal tin mining at the type locality of T. yangi in Gejiu, Yunnan, China; c) Deforestation and infrastructure constructions at the type locality of T. yangi in Gejiu, Yunnan, China. Photographs by Kai WANG.
Fig. 1 in Reproductive biology of Tylototriton yangi (Urodela: Salamandridae), with suggestions on its conservation
Fig. 1. Location of the study site (the type locality of Tylototriton yangi) at Gejiu, Honghe Prefecture, Yunnan Province, PR China. Numbered locations of potential breeding pools (abbreviated as PBP) are shown in yellow.
Fig. 5 in Reproductive biology of Tylototriton yangi (Urodela: Salamandridae), with suggestions on its conservation
Fig. 5. Developmental series from fertilized embryos to newly metamorphosed juvenile of Tylototriton yangi. Clockwise from the upper left: a) fertilized embryos of T. yangi; embryos sank to the bottom of water, and were not adhesive to plants, the bottom of the container, or to one another; b) newly hatched larvae with one pair of balancers 6-day post-hatch; c) larva 17-days post-hatch, in which the forelimbs became visible; d) larva 50-days post-hatch; e) larva 75-days post-hatch; f) pre-metamorphic larva 95-days post hatch; g) newly metamorphosed individual 115-day post hatch. Photographs by Kai WANG and Guangyu LI.
Fig. 4 in Reproductive biology of Tylototriton yangi (Urodela: Salamandridae), with suggestions on its conservation
Fig. 4. Pre-spermatophore courtship behavior pattern of Tylototriton yangi in captivity. Clockwise from top-left: a) male nudging the side of the female's head with his snout; b) male nudging the side of the female's body; c) male blocking female's path and beginning to fold his tail; and d) male fanning the tip of his tail toward the female's head. Photographs by Kai WANG.
Fig. 2 in Reproductive biology of Tylototriton yangi (Urodela: Salamandridae), with suggestions on its conservation
Fig. 2. Habitat in which Tylototriton yangi was found at the type locality of Gejiu. Examples of typical breeding pools are shown at the right corner (from left to right, PBP#17 and PBP#12), and positions of other pools are indicated by white arrows. Photographs by Kai WANG.
Figure 1. A in A new subspecies, Lyciasalamandra atifi oezi n. ssp. (Urodela: Salamandridae) from Gazipaşa (Antalya, Turkey)
Figure 1. A Dorsal aspects of the holotype; B Parotoids of holotype; C Dorsal aspects of the paratype female; D Dorsal aspects of the juvenile specimen from the Doğanca Village (Gazipaşa, Antalya).
Figure 2 in A new subspecies, Lyciasalamandra atifi oezi n. ssp. (Urodela: Salamandridae) from Gazipaşa (Antalya, Turkey)
Figure 2. Habitats of Lyciasalamandra atifi oezi n. ssp. from the Doğanca Village (Gazipaşa, Antalya).
Figure 1. A in Rediscovery of the Lake Urmia newt, Neurergus crocatus Cope, 1862 (Caudata: Salamandridae) in northwestern Iran after 150 years
Figure 1. A new locality, Oshnaviyeh (11) and other known localities of Neurergus crocatus: 1) Beytüşşebap, 2) Şemdinli, 3) Agrah, 4) Shiwolak, 5) Tajeka, 6) Barzan, 7) Girbish, 8) Roste, 9) Smilan, 10) Nawanda. The hatched part shows our studied area, which also covers the unknown exact location of Cope's original "terra typica."
Fig. 8. A in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 8. A comparison of initial body size (SVLA) with monthly growth rates of Tylototriton podichthys at the study site, based on 17 recaptured individuals during the study. Growth rate and initial SVLA had a significant negative correlation (r2 =0.42; P<0.01).
Fig. 4 in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 4. Temperature, rainfall, and number of captured newt during each sampling period from June 2012 to July 2013. The black bars represent the number of newts, the full bold line represents mean maximum temperature, the full line represents mean minimum temperature, and the dashed line represents rainfall.
Fig. 7 in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 7. Means and standard deviations of total lengths of wild larvae of Tylototriton podichthys at the study site during July to December 2012.
Fig. 6 in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 6. Life stages of Tylototriton podichthys at the study site. A, Eggs under grass in June; B, eggs on leaf litter in July, C, larvae at bottom of stream pool in October, D, eft emerging onto land, found under a log 30 cm from the stream water on 10 December 2012, E, dorsal view; and F, ventral view of an eft that has begun to resemble an adult newt.
Fig. 5. A in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 5. A, Percentages of habitat types; and B, microhabitat types of Tylototriton podichthys at the study site during four sampling periods.
Fig. 2 in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 2. Sexual dimorphism of Tylototriton podichthys at the study site. A, Dorsal view of adult female; B, dorsal view of adult male; C, ventral view of female cloaca; D, ventral view of male cloaca.
Fig. 1 in Ecology and natural history of the knobby newt Tylototriton podichthys (Caudata: Salamandridae) in Laos
Fig. 1. Study site of Tylototriton podichthys at Houay Mor Stream, Yord Lieng Village, Kham District, Xiengkhouang Province, Laos.
Figure 3 in Taxonomy, biogeography and evolution of Euproctus (Amphibia: Salamandridae), with the resurrection of the genus Calotriton and the description of a new endemic species from the Iberian Peninsula
Figure 3. Maximum likelihood (ML) tree for some representatives of the Western brook newts (log likelihood −955.08162, HKY + G model of sequence evolution) inferred from a reduced dataset, which included 354 bp of cytb mtDNA. Bootstrap support and Bayesian posterior probabilities for particular nodes are shown in the boxes with the figures indicating the percentage support for different analyses. Upper left, bootstrap support derived by ML (HKY + G). Upper right, posterior probability values from the Bayesian analysis (HKY + G). Lower left, maximum parsimony (MP) bootstrap support derived by MP (ts = 1; tv = 1). Lower right, bootstrap support derived by MP (ts = 1; tv = 6). When the difference between the four support values was <5%, only the average value is shown. Numbers in square brackets refer to localities shown in Fig. 1 and listed in Table 1.
Figure 7 in Taxonomy, biogeography and evolution of Euproctus (Amphibia: Salamandridae), with the resurrection of the genus Calotriton and the description of a new endemic species from the Iberian Peninsula
Figure 7. Plot of first and second canonical variables for male Western brook newts. Filled squares indicate specimens from the El Montseny massif and filled circles the remaining specimens analysed.
Figure 10. A in Taxonomy, biogeography and evolution of Euproctus (Amphibia: Salamandridae), with the resurrection of the genus Calotriton and the description of a new endemic species from the Iberian Peninsula
Figure 10. A, female Calotriton arnoldi sp. nov. from population A2 with uniform chocolate coloration. B, male specimen of C. arnoldi from population A2 showing several yellowish blotches on the sides of the tail and body. C, close up of same female as in A. D, female C. arnoldi from population B2 showing the typical uniform chocolate coloration of this population. E, larvae of C. arnoldi from population B1. F, same female as in A in ventral view. G–H, juvenile of C. arnoldi from population A2 with several yellowish blotches on the sides of the tail and body (note the absence of the vertebral line that is typical of C. asper). I–J, details of the female cloaca of the same specimen as in A. K–L, detail of the female cloaca of a living specimen of C. asper from Berga, Spain (K) and Ordesa, Spain (L).
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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.