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2,581 results for “amphibians”
The genomic location or Genbank accession of Tas2r genes in amphibians
<p><strong>Scaffold or chromosome location of <em>Tas2r</em> genes in amphibians</strong></p>
Fig. 2 in Helminth communities from amphibians inhabiting agroecosystems in the Pampean Region (Argentina)
Fig. 2. Contribution of each group of helminths to the proportion of the total of infected individuals for each host species.
Supplementary material 2 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Gastrophryne carolinensis calling, 08 July 2003.
Supplementary material 3 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Hyla squirella calling 08 July 2003
Figure 8 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 8 Eight reptiles that occur on North Padre Island aPantherophis emoryi (Great Plains ratsnake) bTantilla gracilis (flathead snake) cThamnophis marcianus (checkered garter snake) dThamnophis proximus (western ribbon snake) eTropidoclonion lineatum (lined snake) from South Bird Island, just offshore of NPIfRena dulcis (Texas threadsnake; PINS file photo) gCrotalus atrox (western diamond-backed rattlesnake) hSistrurus tergeminus (western massasauga).
Figure 7 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 7 Comparison of Cemophora lineri (Texas scarletsnake) specimen from North Padre Island with C. lineri specimen from San Patricio County aCemophora lineri (Texas scarletsnake) from North Padre Island bCemophora lineri from San Patricio County. Note that the colors of the NPI specimen are duller than those of the scarletsnake from the mainland.
Figure 6 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 6 Eight reptiles that occur on North Padre Island aPlestiodon obsoletus (great plains skink bScincella lateralis (little brown skink) cAspidoscelis sexlineatus (six-lined racerunner) dColuber constrictor (North American racer) eHeterodon platirhinos (eastern hognose snake) fLampropeltis triangulum annulata (Tamaulipan milksnake) gMasticophis flagellum (coachwhip) hNerodia rhombifer (diamondback watersnake).
Supplementary material 4 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Rana sphenocephala and possibly R. berlandieri calling, 10 February 2013
Figure 5 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 5 Eight reptiles that occur on North Padre Island aEretmochelys imbricata (Hawksbill sea turtle) bChelydra serpentina (common snapping turtle) cMalaclemys terrapin (diamondback terrapin) dTrachemys scripta (pond slider) eOphisaurus attenuatus (slender glass lizard) fHemidactylus turcicus (Mediterranean house gecko) gHolbrookia propinqua (keeled earless lizard) hPhrynosoma cornutum (Texas horned lizard; photograph by Jerry Batey).
Figure 2 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 2 Major ecological zones of North Padre Island a back beach and foredunes b dune/swale complex c emergent wetlands d mid-island grasslands e sand dunes (back island dunes) f grassland/wetland matrix g saline flats h wind tidal flats (photograph by John Karges).
Figure 3 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 3 Reptile and amphibian trap array in grassland near the midpoint of North Padre Island. Two of four ~ 15 m arms of the array have been installed. Cemophora lineri (Texas scarletsnake) was captured in the center box at this study site.
Figure 4 from: Duran M (2021) An annotated checklist of the amphibians and reptiles of North Padre Island, Texas, USA, with comparisons to adjacent barrier island and mainland herpetofauna. ZooKeys 1073: 119-175. https://doi.org/10.3897/zookeys.1073.57241
Figure 4 Eight Anurans found on North Padre Island aBufo woodhousii (Woodhouse's toad) bBufo nebulifer (Gulf Coast toad; photograph by Alicia Walker) cGastrophryne carolinensis (eastern narrow-mouthed toad) dHyla cinerea (Green treefrog) eHyla squirella (squirrel treefrog) fPseudacris clarkii (spotted chorus frog) gRana berlandieri (Rio Grande leopard frog) hScaphiopus hurterii (Hurter's spadefoot).
Supplementary material 2 from: Vimercati G, Davies SJ, Hui C, Measey J (2021) Cost-benefit evaluation of management strategies for an invasive amphibian with a stage-structured model. NeoBiota 70: 87-105. https://doi.org/10.3897/neobiota.70.72508
Supplementary material B
Supplementary material 1 from: Vimercati G, Davies SJ, Hui C, Measey J (2021) Cost-benefit evaluation of management strategies for an invasive amphibian with a stage-structured model. NeoBiota 70: 87-105. https://doi.org/10.3897/neobiota.70.72508
Supplementary material A
Figure 8b from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 8b Interpolated and extrapolated species accumulation curves versus sample coverage (percent of the population represented by species in the sample) for the Machay and Naturetrek-Vizcaya Reserves. The black vertical line marks the number of individuals at which the richness of each are compared on each curve (this is the coverage of the least complete sample). At this coverage, the sample from Naturetrek-Viscaya would on the average have three species, while a sample of the same coverage from Machay would be expected to have six species.
Figure 8a from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 8a Interpolated and extrapolated species accumulation curves versus number of individuals for the Machay and Naturetrek-Vizcaya Reserves. The black vertical line marks the number of individuals at which the richness of each are compared on each curve (this is the size of the smallest sample). At this sample size (n =11), the sample from Naturetrek-Viscaya would on the average have three species, while a sample of the same size from Machay would be expected to have five species.
Figure 32 from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 32 Pristimantis maryanneae sp. nov. (DHMECN 14454), adult male, holotype A palmar surface detail B plantar surface detail Photographs by Mario H. Yánez-Muñoz.
Figure 5 from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 5 A Conservation status categories of the amphibian composition from the Machay Reserve and the Naturetrek-Vizcaya Reserve, under the IUCN Red List and ARLE Amphibian Red List Ecuador (IUCN 2012; Ron et al. 2019) B Distribution ranges of amphibians from MR and NVR: IN = Introduced, NE = Not Evaluated, WN = Wide Neotropical distribution, EC = Endemic to Ecuador, AN = Endemic to the Andes.
Figure 31 from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 31 Pristimantis maryanneae sp. nov. (DHMECN 14454), adult, male holotype SVL = 17.9 mm A dorsal view B ventral view C lateral view. Photographs by Mario H. Yánez-Muñoz.
Figure 36 from: Reyes-Puig JP, Reyes-Puig C, Franco-Mena D, Jost L, Yánez-Muñoz MH (2022) Strong differentiation between amphibian communities on two adjacent mountains in the Upper Rio Pastaza watershed of Ecuador, with descriptions of two new species of terrestrial frogs. ZooKeys 1081: 35-87. https://doi.org/10.3897/zookeys.1081.71488
Figure 36 Pristimantis burtoniorum sp. nov. (DHMECN 14479), adult female, holotype A palmar surface detail B plantar surface detail. Photographs by Mario H. Yánez-Muñoz.
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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.