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Figure 3 from: Lemos-Espinal JA, Smith GR, Woolrich-Piña GA (2018) Amphibians and reptiles of the state of San Luis Potosí, Mexico, with comparisons with adjoining states. ZooKeys 753: 83-106. https://doi.org/10.3897/zookeys.753.21094
Figure 3 Vegetation type map of the state of San Luis Potosí, Mexico (modified from Dirección General de Geografía – INEGI 2005).
Figure 5 from: Lemos-Espinal JA, Smith GR, Woolrich-Piña GA (2018) Amphibians and reptiles of the state of San Luis Potosí, Mexico, with comparisons with adjoining states. ZooKeys 753: 83-106. https://doi.org/10.3897/zookeys.753.21094
Figure 5 Results of cluster analysis of the herpetofaunas of San Luis Potosí and its neighboring states (Hidalgo, Nuevo León, Querétaro, and Tamaulipas). The distances provided are Euclidean distances for A the entire herpetofauna and reptiles only, respectively and B amphibians only.
Supplementary material 1 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
12S and 16S neighbor-joining trees :
Figure 1 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
Figure 1 Map of Tanintharyi Region, Myanmar. The Tanintharyi Nature Reserve, north of Dawei, and the Lampi National Park, island northwest of Kawthoung, are officially designated as national parks in Myanmar. The other areas in Myanmar are proposed as national parks (Protected Areas) or being considered for future protection (Reserve Forests). The main survey reported here was conducted in the Yeybu area of the proposed Tanintharyi National Park (triangles: Forest 1–2 and Gardens sites). A shorter survey, with fewer people, was conducted in the Reserve Forest near the Chaung-nauk-pyan area (diamonds: Forest 3 and slash & burnt sites) and is also included in this report. Map provided by Grant M. Connette of the Smithsonian Conservation Biology Institute (SCBI).
Figure 4 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
Figure 4 Selected turtles and lizards found during this study's expedition. A Indotestudo elongata (USNM HerpImage 2896) B Dogania subplana (USNM HerpImage 2897) C Acanthosaura crucigera (USNM 587019) D Eutropis multifasciata (USNM 587035) E Takydromus sexlineatus (USNM 587034) F Calotes emma (USNM 587022). Photos A & C by Daniel G. Mulcahy, all others by Myint Kyaw Thura.
Figure 5 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
Figure 5 Selected snakes found during this study's expedition. A Malayopython reticulatus (USNM HerpImage 2892) B Ahaetulla mycterizans (USNM 587040) C Dendrelaphis pictus (USNM HerpImage 2893) D Boiga dendrophila (USNM 587041) E Xenochrophis trianguligerus (USNM 587045) F Rhabdophis chrysargos (USNM 587044) G Rhabdophis nigrocinctus (USNM HerpImage 2894) H Naja kaouthia (USNM HerpImage 2895). Photos A–B, D–F by Daniel G. Mulcahy, C, H–I by Myint Kyaw Thura.
Figure 3 from: Mulcahy DG, Lee JL, Miller AH, Chand M, Thura MK, Zug GR (2018) Filling the BINs of life: Report of an amphibian and reptile survey of the Tanintharyi (Tenasserim) Region of Myanmar, with DNA barcode data. ZooKeys 757: 85-152. https://doi.org/10.3897/zookeys.757.24453
Figure 3 Selected amphibians found during this study's expedition. A Phrynoidis aspera (USNM 586871) B Limnonectes doriae (USNM 586911) C Microhyla fissipes (USNM 586949) D Odorrana hosii (USNM 586980) E Chalcorana eschatia (USNM 586971) F Fejervarya sp. (USNM 586881) G Occidozyga martensii (USNM 586930) H Sylvirana malayana (USNM 586970). Photos by Myint Kyaw Thura and Daniel G. Mulcahy.
Figure 6 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 6 Species accumulation curves for the amphibians, reptiles, and total herpetofauna of Sonora, Mexico.
Figure 5 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 5 Vegetation type map of the state of Sonora, Mexico (modified from Dirección General de Geografía – INEGI 2005).
Figure 4 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 4 Topographical map with physiographic provinces of the state of Sonora, Mexico. Map modified from Cervantes-Zamora et al. (1990).
Figure 3 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 3 Map of the ecoregions of the state of Sonora, Mexico (created by J Rorabaugh using the base topographic map of INEGI 2009).
Figure 1 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 1 Topographical map of the state of Sonora, Mexico (INEGI 2009). Map of America modified from http://www.gifex.com/fullsize/2009-09-17-3/Mapa-de-Amrica.html; Map of Mexico with the state of Sonora in red modified from Comisión Nacional para el Conocimiento y Uso de la Biodiversidad (2008).
Figure 7 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 7 A The invasive populations of Iguanaiguana were originally established by multiple intentional release events, specifically in Pingtung (1), Kaohsiung (2), Chiayi (3), and gradually expanded to become a continuous distribution. In 2018, a small disjunct population occurred in Taitung (4), which might be another human-induced translocation event B a mature male occupying the canopy during courtship exhibition C the large number of young lizards demonstrates breeding success. Photographed by Chung-Wei You.
Figure 4 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 4 ATrachemysscriptaelegans can be found in natural, semi-natural, or artificial wetlands in urban or suburban regions all around the island B they are usually found in sympatry with the native MauremyssinensisC the hatchling turtles show their potential to reproduce in some habitats. Photographed by Gaus Shang (B) and Yu-Jen Liang (C).
Figure 16 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 16 Distributions of Lepidodactyluslugubris (A) and Hemiphyllodactylustypus (B) are restricted to eastern and southern Taiwan, while Indotyphlopsbraminus (C) is believed to occupy all lowland region of the island.
Figure 15 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 15 AHemidactylusfrenatus has expanded not only throughout the lowland of Taiwan, but also almost all islands in the west Pacific region. The northern one third of Taiwan is believed to have become occupied only in recent decades (indicated by arrows) B a gravid female C the eggs. Photographed by Si-Min Lin.
Figure 13 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 13 A Escaped or released Lithobatescatesbeianus has been recorded almost all around Taiwan B the injured snout of this adult indicated it is recently released from captivity. However, it seems that they have not established a successful breeding population C one of the very rare cases of tadpoles found in the wild was discovered by Gaus Shang. Photographs by Ren-Jay Wang (B) and Gaus Shang (C).
Figure 12 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 12 AEutropismultifasciata has originated from Meinong (1), expanded to the entire southwestern Taiwan, and also colonized offshore islets such as Siao Liouciou (2), Green Island (3), and Orchid Island (4) B an adult male basking on an abandoned tire along a river bank C a mature female with her new-born baby. Photographed by Chung-Wei You (B) and Ren-Jay Wang (C).
Figure 6 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 6 A The exotic population of Chamaeleocalyptratus was established by intentional release in Cijin (1), Kaohsiung City B a female exhibiting its mature coloration in their invasive site C neonates provide evidence of successful breeding in the wild. Photographed by Chung-Wei You.
Figure 10 from: Lee K-H, Chen T-H, Shang G, Clulow S, Yang Y-J, Lin S-M (2019) A check list and population trends of invasive amphibians and reptiles in Taiwan. ZooKeys 829: 85-130. https://doi.org/10.3897/zookeys.829.27535
Figure 10 A Invasion of Gekkomonarchus is thought to have occurred from international timber trades near the Kaohsiung Harbor ((1) and (2)) and a log-processing area (3). In 2018, the newest population was found with disjunt distribution in Taitung County (4) B a mature individual C a large colony of eggs. Photographed by Gaus Shang.
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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.