Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,047
datasets available to search
ShareScore release 0.9.0
Dataset results
1,047 results for “Salamanders”
FIGURE 3 in Description of a new divergent lineage and three new species of Honduran salamanders of the genus Oedipina (Caudata, Plethodontidae)
FIGURE 3. Schematic drawings of dorsal views of the limbs of Oedipina. From left to right, right hand and right foot of holotype of O. leptopoda (MVZ 167772), right foot of holotype of O. quadra (MVZ 257761), right foot of holotype of O. kasios (MVZ 232825). All drawings are at the same scale.
FIGURE 4 in A new species of hynobiid salamander (Urodela: Hynobiidae: Pseudohynobius) from Southwestern China
FIGURE 4. Phylogenetic hypothesis of species of Pseudohynobius derived from a Bayesian analysis of cytochrome b sequence data, reproduced from Zeng et al. (2006). Numbers above branches are Bayesian posterior probabilities (BPPs)/bootstrap proportions (BSPs), and only nodes with greater than 95 BPPs are mapped on the tree. A "X" represents a 100 BPP and a greater than 95 BSP. Pseudohynobius jinfo is referred to as P. sp. 1; P. kuankuoshuiensis is referred to as P. sp. 2.
FIGURE 3 in A distinctive new species of moss salamander (Caudata: Plethodontidae: Nototriton) from an imperiled Honduran endemism hotspot
FIGURE 3. Dorsal (A) and lateral (B) views of the head, and dorsal (C) and ventral (D) aspects of the right hind foot of Nototriton tomamorum sp. nov., showing the lack of separation or differentiation in the toes, and lack of subdigital pads.
FIGURE 5 in A distinctive new species of moss salamander (Caudata: Plethodontidae: Nototriton) from an imperiled Honduran endemism hotspot
FIGURE 5. Riparian habitat at type locality of Nototriton tomamorum, 1550 m elevation; the holotype was collected from a leaf litter pack in a rock wall along the margins of this stream.
FIGURE 1 in A distinctive new species of moss salamander (Caudata: Plethodontidae: Nototriton) from an imperiled Honduran endemism hotspot
FIGURE 1. Distribution of Nototriton in eastern Nuclear Central America; shaded areas>1000 m elevation; open star = type locality of N. tomamorum sp. nov., N. sp.; solid star = N. stuarti; open triangles = N. brodiei; closed triangles = N. limnospectator; solid square = N. barbouri; open diamonds = N. lignicola; solid diamond = N. saslaya.
FIGURE 6. A in A distinctive new species of moss salamander (Caudata: Plethodontidae: Nototriton) from an imperiled Honduran endemism hotspot
FIGURE 6. A. Deforestation in the core zone of RVS Texiguat, 1710 m elevation; recently planted beans in the foreground, with rapidly progressing land clearing visible on the far ridges in the highest part of the reserve; B. Recently cut mahogany logs at the end of the road accessing the vicinity of the type locality of Nototriton tomamorum; these logs were exposed the day we arrived and were partially covered up the second day our team was in the area in an attempt to conceal them. C. Recent deforestation less than 1 km upstream from the type locality of Nototriton tomamorum and the endemic treefrog Isthmohyla insolita; two of our co-workers are pictured in the lower-central portion of the photograph for scale.
FIGURE 4 in A distinctive new species of moss salamander (Caudata: Plethodontidae: Nototriton) from an imperiled Honduran endemism hotspot
FIGURE 4. Bayesian phylogram based on combined dataset of cob and 16S, showing phylogenetic hypothesis for Nototriton and placement of N. tomamorum (bold) as a weakly support sister taxon to the N. barbouri group. Bayesian posterior probability values shown above and maximum likelihood bootstrap support values shown below branches; bootstrap values less than 50% are not shown.
FIGURE 4 in A new species of worm salamander (Caudata: Plethodontidae: Oedipina) in the subgenus Oeditriton from the highlands of northern Nicaragua
FIGURE 4. Habitat of Oedipina nica from: (a-b) Reserva Natural Cerro Datanlí-El Diablo; (c) Reserva Natural Cerro Kilambé (note deforested patch reaching over 1300 m a.s.l. in the Reserve's core zone); and (d) Reserva Natural Macizos de Peñas Blancas.
FIGURE 3 in A new species of worm salamander (Caudata: Plethodontidae: Oedipina) in the subgenus Oeditriton from the highlands of northern Nicaragua
FIGURE 3. Map of Nicaragua and Honduras showing the localities of members of the subgenus Oeditriton: Oedipina nica (circles), O. quadra (squares), and O. kasios (triangles). Open symbols represents each species' type locality. If situated very close to each other, we combined distribution points to yield a single point on our map. Water surfaces are shaded light gray. Areas above 600 m are shaded gray. Areas above 1200 m are shaded dark gray.
FIGURE 2 in A new species of worm salamander (Caudata: Plethodontidae: Oedipina) in the subgenus Oeditriton from the highlands of northern Nicaragua
FIGURE 2. Maximum likelihood phylogram (lnL = -5370.356) of Oedipina, showing placement of O. nica within the Oeditriton subgenus. Maximum likelihood bootstrap support values shown above branches, Bayesian posterior probabilities shown below branches. Support values below 50 not shown. Holotype of O. nica shown in bold.
FIGURE 1 in A new species of worm salamander (Caudata: Plethodontidae: Oedipina) in the subgenus Oeditriton from the highlands of northern Nicaragua
FIGURE 1. (a) Adult male holotype of Oedipina nica (MVZ 263774) from Reserva Natural Cerro Datanlí-El Diablo; (b) adult male paratype of O. nica (UF 156447) from Reserva Natural Cerro Kilambé; (c) adult male paratype (UF 156453) and (d) juvenile paratype (UF 156454) of O. nica from Reserva Natural Macizos de Peñas Blancas.
FIGURE 2 in Redescription of an enigmatic salamander, Pseudohynobius puxiongensis (Fei et Ye, 2000) (Urodela: Hynobiidae)
FIGURE 2. Diagrammatic drawing of skull of Pseudohynobius puxiongensis (CIB-XM3323) in dorsal (A) and ventral (B) views with dermal bones in white or white with black dots (in deeper zones of the skull), cartilage in gray, teeth in open circles, and gaps or holes in black, where pm=premaxillary, n=nasal, pf=prefrontal, l=lacrimal, m=maxillary, f=frontal, os=orbitosphenoid, p=parietal, po=prootic, pt=pterygoid, q=quadrate, s=squamosal, o=operculum, ex=exoccipital, v=vomer, ps=parasphenoid. Figure 2A cited from Peng et al. (2010).
FIGURE 3 in Redescription of an enigmatic salamander, Pseudohynobius puxiongensis (Fei et Ye, 2000) (Urodela: Hynobiidae)
FIGURE 3. The larva (A, CIB-XM3198), egg sac (B), a male staying by a pair of egg sacs (C), and the habitat (D) of Pseudohynobius puxiongensis.
FIGURE 4 in Description of a new species of worm salamander (Caudata, Plethodontidae, Oedipina) in the subgenus Oedopinola from the central portion of the Cordillera Nombre de Dios, Honduras
FIGURE 4. Bayesian phylogram based on concatenated and partition 16S and cyt b dataset, showing phylogenetic hypothesis for the genus Oedipina and its three subgenera and relationships of O. petiola sp. nov. Maximum likelihood bootstrap values and posterior probabilities less than 60 and 0.6 are not shown.
FIGURE 1 in Description of a new species of worm salamander (Caudata, Plethodontidae, Oedipina) in the subgenus Oedopinola from the central portion of the Cordillera Nombre de Dios, Honduras
FIGURE 1. Map of Honduras showing the known localities for Oedipina petiola sp. nov. (square) and its closest relatives, O. gephyra (circle) and O. tomasi (star).
FIGURE 3 in Description of a new species of worm salamander (Caudata, Plethodontidae, Oedipina) in the subgenus Oedopinola from the central portion of the Cordillera Nombre de Dios, Honduras
FIGURE 3. Comparison of foot morphology between the holotype of Oedipina petiola (USNM 343462; SVL = 42.6 mm) and subadult (USNM 343458; SVL = 35.7 mm) and adult (USNM 530585; SVL = 54.1 mm) O. gephyra; A) dorsal (left) and ventral (right) views of right hind foot of O. petiola, B) dorsal (left) and ventral (right) views of right hind foot of a subadult O. gephyra, C) dorsal (left) and ventral (right) views of right hind foot of an adult O. gephyra.
FIGURE 1. Bayesian tree derived from cyt b in Invalidity of Hynobius yunanicus and molecular phylogeny of Hynobius salamander from continental China (Urodela, Hynobiidae)
FIGURE 1. Bayesian tree derived from cyt b data for hynobiid salamanders (sample number at the top of species name). Onychodactylus japonicus was used as outgroup. Nodal values indicate Bayesian posterior probability and bootstrap supports for ML inferences (1000 replicates). Numbers in shaded circles show samples from China.
FIGURE 5. A in Salamanders from the eastern Cordillera de Talamanca, Costa Rica, with descriptions of five new species (Plethodontidae: Bolitoglossa, Nototriton, and Oedipina) and natural history notes from recent expeditions
FIGURE 5. A) Dorsal view of holotype (UCR 20215) and B) ventral photo of the paratype (UCR 20169) of Nototriton matama in life. C) Dorsal view of right hand and D) right foot of holotype. Photo A by E. Boza-Oviedo, B by Alex Monro and E. Boza-Oviedo, C and D by A. García-Rodríguez. The bar in hand and feet are 1 mm length.
FIGURE 1 in Salamanders from the eastern Cordillera de Talamanca, Costa Rica, with descriptions of five new species (Plethodontidae: Bolitoglossa, Nototriton, and Oedipina) and natural history notes from recent expeditions
FIGURE 1. Map of the border region between Costa Rica and Panama, showing expedition routes and type localities for new salamander species.
FIGURE 4. A in Salamanders from the eastern Cordillera de Talamanca, Costa Rica, with descriptions of five new species (Plethodontidae: Bolitoglossa, Nototriton, and Oedipina) and natural history notes from recent expeditions
FIGURE 4. A) Dorsal and B) ventral photos of holotype (UCR 20852) of Bolitoglossa kamuk in life. C) Juvenile paratype (UCR 20854) of B. kamuk in life, showing variation in coloration. D) Dorsal view left hand and E) right foot of preserved holotype. Photos A, B and C by S. Rovito, D and E by Adrián García-Rodríguez. The bar in hand and feet are 1 mm length.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.