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766 results for “Amphibians & reptiles”
Fig. 9 in A Biogeographic Synthesis Of The Amphibians And Reptiles Of Indochina
Fig. 9. Cluster analysis phenogram for the endemic herpetofauna of Indochina.
Fig. 7 in A Biogeographic Synthesis Of The Amphibians And Reptiles Of Indochina
Fig. 7. Cluster analysis phenogram for the lizards of Indochina.
Fig. 5 in A Biogeographic Synthesis Of The Amphibians And Reptiles Of Indochina
Fig. 5. Cluster analysis phenogram for the amphibians of Indochina.
Fig. 6 in A Biogeographic Synthesis Of The Amphibians And Reptiles Of Indochina
Fig. 6. Cluster analysis phenogram for the snakes of Indochina.
Fig. 3 in To Registrations Of Bottom Macroinvertebrates, Fish, Amphibians And Reptiles Of The Upper Tskhenistskali River Basin (Georgia, Lower Svanetia)
Fig. 3. Caught specimens of the brown trout (S. trutta).
Fig. 4 in To Registrations Of Bottom Macroinvertebrates, Fish, Amphibians And Reptiles Of The Upper Tskhenistskali River Basin (Georgia, Lower Svanetia)
Fig. 4. Caught specimens of the Colchic barbel (B. escerichia). Amphibia
Fig. 1 in To Registrations Of Bottom Macroinvertebrates, Fish, Amphibians And Reptiles Of The Upper Tskhenistskali River Basin (Georgia, Lower Svanetia)
Fig. 1. Study area and sampling station.
Figure 7 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 7. Amphibians recorded at the Reserva Extrativista do Baixo Juruá. (A) Osteocephalus aff. leprieurii; (B) Osteocephalus taurinus; (C) Scarthyla goinorum; (D) Scinax ruber; (E) Trachycephalus typhonius; (F) Adenomera andreae; (G) Adenomera simonstuarti; (H) Edalorhina perezi. Photographs by LJCLM (A, B, G) andVTC (C-F, H).
Figure 11 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 11. Lizards recorded at Reserva Extrativista do Baixo Juruá. (A) Loxopholis snethlageae; (B) Iguana iguana; (C) Copeoglossum nigropunctatum (juvenile); (D) Gonatodes humeralis; (E) Crocodilurus amazonicus; (F) Kentropyx pelviceps; (G) Plica umbra ochrocollaris; (H) Uranoscodon superciliosus. Photographs by LJCLM (A, D) and VTC (B, C, E-H).
Figure 3 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 3. Extrapolated rarefaction curves showing variation in amphibian (A) and reptile (B) species richness in the Reserva Extrativista do Baixo Juruá in relation to our sampling effort. Observed data are in full lines and extrapolated in dashed lines. Shaded areas represent 95% confidence intervals (bootstrap with 1,000 replications).
Figure 1 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 1. Geographic location of the Reserva Extrativista (RESEX) do Baixo Juruá in relation to South America (A) and the Juruá River basin, in Brazilian Western Amazonia (B); upon an elevation background). In (B), protected areas and indigenous territories that cover this river basin are delimited in white and pink, respectively. The focal area is zoomed at (C), showing the eleven localities sampled for amphibians and reptiles (numbered white symbols; see Table 1), and the Juruá municipality. Background in (C) is from Google Earth (Map data ©2015 Google/Landsat/Copernicus).
Figure 4 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 4. Amphibians recorded at the Reserva Extrativista do Baixo Juruá. (A) Allobates femoralis; (B) Rhinella castaneotica; (C) Rhinella aff. margaritifera; (D) Rhinella exostosica; (E) Rhinella marina; (F) Ceratophrys cornuta; (G) Oreobates quixensis; (H) Pristimantis reichlei. Photographs by VTC (A, C, E, F, H) and LJCLM (B, D, G).
Figure 13 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 13. Snakes recorded at Reserva Extrativistado Baixo Juruá.(A) Drepanoidesanomalus; (B) Erythrolampruspygmaeus; (C)Erythrolamprusreginae; (D) Erythrolamprus typhlus; (E) Helicops angulatus; (F) Helicops polylepis; (G) Oxyrhopus melanogenys; (H) Oxyrhopus occipitalis. Photographs byVTC (A-E, G, H) and LJCLM (F).
Figure 2 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 2. Panoramic view of the white-water Juruá River at its lower course (A); some habitats recently sampled for amphibians and reptiles at the Reserva Extrativista do Baixo Juruá, state of Amazonas, Brazil: (B) seasonally flooded habitats at the confluence of the tributary Andirá River, and (C) non-flooded forest (paleovárzea); as well as different trap methods and setups used during sampling: (D, E) linear pitfall trap stations, with drift fences, (F) funnel traps, installed between the buckets of pitfall traps, (G) bucket part of a pitfall trap station in "Y″ without drift fences. Photographs by LJCLM (A-C) and VTC (D-G).
Figure 5 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 5. Amphibians recorded at the Reserva Extrativista do Baixo Juruá. (A) Strabomantis sulcatus; (B) Ameerega trivittata; (C) Phyzelaphryne nimio; (D) Boana boans; (E) Boana calcarata; (F) Boana cinerascens; (G) Boana geographica; (H) Boana lanciformis. Photographs by VTC (A, B, D, E, H) and LJCLM (C, F, G).
Figure 12 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 12. Snakes recorded at Reserva Extrativista do Baixo Juruá. (A) Anilius scytale; (B) Epicrates cenchria; (C) Chironius fuscus; (D) Drymoluber dichrous; (E) Atractus major; (F) Atractus poeppigi; (G) Atractus torquatus; (H) Dipsas catesbyi. Photographs by VTC.
Figure 10 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 10. Lizards recorded at Reserva Extrativista do Baixo Juruá. (A) Alopoglossus atriventris; (B) Alopoglossus brevifrontalis; (C) Alopoglossus indigenorum; (D) Anolis punctatus; (E) Anolis transversalis; (F) Anolis tandai (male); (G) Anolis tandai (female); (H) Cercosaura argulus. Photographs by LJCLM (A, B, D) and VTC (C, E-H).
Figure 14 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 14. Snakes and chelonians recorded at Reserva Extrativista do Baixo Juruá. (A) Thamnodynastes pallidus; (B) Xenodon rabdocephalus; (C) Micrurus hemprichii ortoni; (D) Micrurus lemniscatus; (E) Bothrops atrox; (F) Bothrocophias hyoprora; (G) Platemys platycephala; (H) Chelonoidis denticulata. Photographs by VTC.
Figure 9 in Amphibians and reptiles from a protected area in western Brazilian Amazonia (Reserva Extrativista do Baixo Juruá)
Figure 9. Amphibians recorded at the Reserva Extrativista do Baixo Juruá. (A) Chiasmocleis bassleri; (B) Chiasmocleis hudsoni; (C) Chiasmocleis ventrimaculata; (D) Ctenophryne geayi; (E) Phyllomedusa vaillantii; (F) Pipa pipa; (G) Lithobates palmipes (metamorph);(H) Caecilia tentaculata. Photographs by LJCLM (A-E) andVTC (F-H).
Data for: Meta analysis reveals impacts of disturbance on reptile and amphibian body condition
<p>Ecosystem disturbance is increasing in extent, severity, and frequency across the globe. To date, research has largely focused on the impacts of disturbance on animal population size, extinction risk, and species richness. However, individual responses, such as changes in body condition, can act as more sensitive metrics and may provide early warning signs of reduced fitness and population declines.</p> <p>We conducted the first global systematic review and meta-analysis investigating the impacts of ecosystem disturbance on reptile and amphibian body condition. We collated 384 effect sizes representing 137 species from 133 studies. We tested how disturbance type, species traits, biome, and taxon moderate the impacts of disturbance on body condition.</p> <p>We found an overall negative effect of disturbance on herpetofauna body condition (Hedges' <em>g =</em> -0.37, 95%CI: -0.57, -0.18). Disturbance type was an influential predictor of body condition response and all disturbance types had a negative mean effect. Drought, invasive species, and agriculture had the largest effects. The impact of disturbance varied in strength and direction across biomes, with the largest negative effects found within Mediterranean and temperate biomes. In contrast, taxon, body size, habitat specialisation, and conservation status were not influential predictors of disturbance effects.</p> <p>Our findings reveal the widespread effects of disturbance on herpetofauna body condition and highlight the potential role of individual-level response metrics in enhancing wildlife monitoring. The use of individual response metrics alongside population and community metrics would deepen our understanding of disturbance impacts by revealing both early impacts and chronic effects within affected populations. This could enable early and more informed conservation management.</p>
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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)
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.