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766 results for “Amphibians & reptiles”
Figure 7 from: Lemos-Espinal JA, Smith GR (2020) A conservation checklist of the amphibians and reptiles of the State of Mexico, Mexico with comparisons with adjoining states. ZooKeys 953: 137-159. https://doi.org/10.3897/zookeys.953.50881
Figure 7 Species accumulation curves for total herpetofauna, amphibians, and reptiles of the State of Mexico, Mexico.
Figure 6 from: Lemos-Espinal JA, Smith GR (2020) A conservation checklist of the amphibians and reptiles of the State of Mexico, Mexico with comparisons with adjoining states. ZooKeys 953: 137-159. https://doi.org/10.3897/zookeys.953.50881
Figure 6 AAmbystoma lermaenseBChiropterotriton orculusCAbronia deppiiD juvenile Sceloporus sugillatusECrotalus transversus. Photos by Eric Centenero-Alcalá
Figure 5 from: Lemos-Espinal JA, Smith GR (2020) A conservation checklist of the amphibians and reptiles of the State of Mexico, Mexico with comparisons with adjoining states. ZooKeys 953: 137-159. https://doi.org/10.3897/zookeys.953.50881
Figure 5 Climate map of the State of Mexico, Mexico (modified from García – Comisión Nacional para el Conocimiento y Uso de la Biodiversidad 1998).
Figure 4 from: Lemos-Espinal JA, Smith GR (2020) A conservation checklist of the amphibians and reptiles of the State of Mexico, Mexico with comparisons with adjoining states. ZooKeys 953: 137-159. https://doi.org/10.3897/zookeys.953.50881
Figure 4 Vegetation map of the State of Mexico, Mexico (modified from Dirección General de Geografía – INEGI 2016).
Figure 3 from: Lemos-Espinal JA, Smith GR (2020) A conservation checklist of the amphibians and reptiles of the State of Mexico, Mexico with comparisons with adjoining states. ZooKeys 953: 137-159. https://doi.org/10.3897/zookeys.953.50881
Figure 3 Physiographic provinces of the State of Mexico, Mexico (modified from Cervantes-Zamora et al. 1990).
FIGURE 1 in Quantifying vertebrate zoogeographical regions of Australia using geospatial turnover in the species composition of mammals, birds, reptiles and terrestrial amphibians
FIGURE 1. Map of Australia with major clusters retrieved from the analysis.
FIGURE 8 in Quantifying vertebrate zoogeographical regions of Australia using geospatial turnover in the species composition of mammals, birds, reptiles and terrestrial amphibians
FIGURE 8. The interim zoogeographic provinces of Australia.
Figure 4 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 4 Amphibians and reptiles recorded in the Parque Nacional da Serra das Lontras. ADendropsophus branneriBDendropsophus aff. bromeliaceusCD. elegansDD. haddadiEOlolygon strigilataFPhyllodytes sp. 1 GScinax cf. x-signatusHCrossodactylus sp. IAdenomera clade M JCrossodactylodes septentrionalisKLeptodactylus cf. latransLPhasmahyla spectabilisMPhyllomedusa burmeisteriNCorallus hortulanusOChironius fuscusPDipsas catesbyiQDipsas neuwiediRErythrolamprus reginae, SImantodes cenchoaTOxybelis aeneus.
Figure 1 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 1 Location of the Parque Nacional da Serra das Lontras and the evaluated transects. A The Parque Nacional da Serra das Lontras B trails and transects sampled during 2017 and 2018.
Figure 3 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 3 Amphibians recorded in the Parque Nacional da Serra das Lontras: ABrachycephalus pulexBIschnocnema verrucosaCIschnocnema cf. parvaDRhinella cruciferEVitreorana baliommaFV. eurygnathaGVitreorana sp.nov. HV. uranoscopaIHaddadus binotatusJPristimantis sp. 1 KPristimantis sp. 2 LPristimantis paulodutraiMPristimantis vinhaiNAdelophryne sp. 8 OAdelophryne sp. 2 PGastrotheca recavaQAplastodiscus ibirapitangaRA. weygoldtiSBoana faberTBokermannohyla lucianae.
Figure 2 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 2 General and detail view of the change of vegetation in the Parque Nacional da Serra das Lontras. A Panoramic view from "Peito de Moça" (930 m altitude) B view of the "Peito de Moça" C primary vegetation with thin and tall trees with closed canopy below 750–800 m altitude D smaller vegetation with epiphytes and canopy more open in the peaks.
Figure 5 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 5 Reptiles recorded in the Parque Nacional da Serra das Lontras. AOxyrhopus clathratusBO. formosusCO. guibeiDXenopholis scalarisEAnolis fuscoauratusFHemidactylus mabouiaGLeposoma nanodactylusHL. scincoidesIEnyalius catenatusJTropidophis grapiunaKBothrops bilineatusLB. jararaca.
FIGURE 8 in Note on a collection of Amphibians and Reptiles from Western Sumatra (Indonesia), with the description of a new species of the genus Bufo
FIGURE 8. Naja sumatrana (Müller, 1887). Specimen not preserved.
FIGURE 2. A, B, C, D in Alfredo Dugès' type specimens of amphibians and reptiles revisited
FIGURE 2. A, B, C, D, Syntypes of Ambystoma altamirani (HE 316, 317, 318, 319).
Supplementary material 2 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Brief distribution records
Supplementary material 1 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Scientific articles on Philippine herpetology, published from 2002–2022
Figure 6 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Figure 6 The total number of papers grouped by the first author's A gender (7.13 male: 1.0 female) and B nationality (1.07 foreign: 1.0 Filipino).
Figure 4 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Figure 4 A Accumulation curves depicting the relationships between the cumulative total number of species per taxon (key) and the year of description. The orange bars indicate the number of new species described annually B number of papers published under the Taxonomy category, grouped by data type.
Figure 5 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Figure 5 Maps showing the type localities of A new species described in the past two decades B localities of new distribution records and natural history notes, and C the inventory sites available from publications and curated databases. Dashed squares indicate understudied regions (C) where comprehensive surveys have not yet been published, but natural history notes and new geographical records have begun to fill spatial gaps.
Figure 3 from: Meneses CG, Pitogo KME, Supsup CE, Brown RM (2024) Philippine herpetology (Amphibia, Reptilia), 20 years on: two decades of progress towards an increasingly collaborative, equitable, and inclusive approach to the study of the archipelago's amphibians and reptiles. ZooKeys 1190: 213-257. https://doi.org/10.3897/zookeys.1190.109586
Figure 3 Total of published papers compiled (2002–2022) A category per taxon and B category proportions in percentages.
ScienceDex guides
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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.