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Fig. 2 in New finds of Olenekian, Early Triassic, trematosaurid amphibians and prolocophonid reptiles from Poland
Fig. 2. Parasphenoid of Trematosauridae gen. et sp. indet. from Lower Triassic of Stryczowice, Holy Cross Mountains, Poland. ZPAL V. 78/3, reconstruc- tion in dorsal (A1), ventral (A2), and lateral (A3) views, original specimen, part and counterpart (A4, A5). The restoration was based on the CT scan by supplementing the missing fragment with a mirror image of the preserved part (Fig. 3B).
Fig. 4 in New finds of Olenekian, Early Triassic, trematosaurid amphibians and prolocophonid reptiles from Poland
Fig. 4. Temnospondyli indet. (A) and Procolophonidae gen. et sp. indet (B) from Lower Triassic of Stryczowice, Holy Cross Mountains, Poland. A. ZPAL V. 78/2, tooth. B. ZPAL V. 78/1, maxilla in lateral (B1) and ventral (B2) views; teeth in lateral view (B3, B5); cross-section of maxillary teeth in dorsal view (B4).
Fig. 1 in New finds of Olenekian, Early Triassic, trematosaurid amphibians and prolocophonid reptiles from Poland
Fig. 1. The geological setting of the vertebrate-bearing locality at Stryczowice. A. Location of the Holy Cross Mountains in Poland. B. Simplified geological map of the Holy Cross Mountains with Paleozoic core and range of the Bundsandstein exposures. C. Location of the Stryczowice locality on the geological map of the north-eastern margin of the Holy Cross Mountains with Paleozoic deposits, continental mass flow-conglomerates traditionally referred to as the "Zechstein", Buntsandstein, and younger deposits. D. Log of the Stryczowice quarry with location of the bone-bearing basal conglomerate marked by a black arrow, and location of the levels with arthropod trackways marked by white arrows; numbers 1–5 mark units discussed in text. Figure adopted from Machalski and Machalska 1994: fig. 1.
Fig. 3 in New finds of Olenekian, Early Triassic, trematosaurid amphibians and prolocophonid reptiles from Poland
Fig. 3. Comparison of the parasphenoid of Trematosauridae gen. et sp. indet. with specimens from Germany and Russia. A. Trematosaurus brauni Burmeister, 1849, Merkel's Quarry, Germany,?late Olenekian, MSB G 366 in ventral view (modified from Schoch 2019: fig. 7B). B. Trematosauridae gen. et sp. indet., Stryczowice, Holy Cross Mountains, Poland, early Olenekian{?}, ZPAL V. 78/3 in ventral (B1) and dorsal (B1) views. C. Inflectosaurus amplus Shishkin, 1960, Bolshoe Bogdo locality, late Olenekian, PIN 953/100 in dorsal view (modified from Shishkin 1968: fig. 2c).
Fig. 13 in On The Study Of Fauna (Macroinvertebrates, Fish, Amphibians, Reptiles, Birds And Mammals) Of The Lower Course Of Shokhdara River Valley In Pamir, Mountain Bodakhshan, Tajikistan
Fig. 13. Total avifauna list versa the actually registered species; note: some species may be included in more than 1 type of occurrence.
Fig. 10 in On The Study Of Fauna (Macroinvertebrates, Fish, Amphibians, Reptiles, Birds And Mammals) Of The Lower Course Of Shokhdara River Valley In Pamir, Mountain Bodakhshan, Tajikistan
Fig. 10. Himalayan agamas spotted along the rocks and mountain slopes along the course of Shokhdara River.
Fig. 2 in Multi-Year Dynamics Of Faunistic Complexes Of Amphibian And Reptile In Natural And Transformed Ecosystems In Belarus
Fig. 2. Changes in the species composition and number of faunistic complexes of amphibians and reptiles in the long-term monitoring points on the site of a low-land bog transformed into farmland (drainage reclamation work was implemented in 2000) Notes: R.a. – Rana arvalis, R.t. – Rana temporaria, B.b. – Bufo bufo, P.e.c. – Pelophelaх esculentus complex, B.v. – Bufotes viridis, P.f. – Pelobates fuscus, L.v. – Lissotriton vulgaris, Z.v. – Zootoca vivipara, N.n. – Natrix natrix, V.b. – Vipera berus, L.a. – Lacerta agilis
Fig. 1 in Multi-Year Dynamics Of Faunistic Complexes Of Amphibian And Reptile In Natural And Transformed Ecosystems In Belarus
Fig. 1. Options of long-term dynamics of herpetocomplex species diversity in regular monitoring sites in Belarus Notes: a-upland bog, natural reserve (stable state), b-floodplain meadow, poorly transformed territory (fluctuating dynamics), c-mixed coniferous-small-leaved forest, transformed landscape (unstable state)
Fig. 1 in Trophic Structure Of Amphibian And Reptile Communities In Terrestrial And Aquatic Ecosystems Of Belarus
Fig. 1. Scheme of food relations of amphibians and reptiles in communities of terrestrial and aquatic ecosystems of Belarus.
Fig. 2 in Trophic Structure Of Amphibian And Reptile Communities In Terrestrial And Aquatic Ecosystems Of Belarus
Fig. 2. Degree of similarity of taxonomic composition of food ration of amphibians and reptilesentomophages in natural ecosystems of Belarus.
FIGURA 9 in Relaciones espaciales y alimenticias del ensamblaje de reptiles del complejo cenagoso de Zapatosa, departamento del Cesar (Colombia)
FIGURA 9: Dendrograma de similitud que muestra las relaciones de sobreposición de dieta (nicho alimenticio), entre las especies de reptiles del complejo cenagoso de Zapatosa. Para abreviaciones de las especies en el dendrograma se utilizan las mismas del Anexo 4.
FIGURA 8 in Relaciones espaciales y alimenticias del ensamblaje de reptiles del complejo cenagoso de Zapatosa, departamento del Cesar (Colombia)
FIGURA 8: Dendrograma de similitud que muestra las relaciones de sobreposición de microhábitat entre las especies de reptiles del complejo cenagoso de Zapatosa. Para abreviaciones de las especies en el dendrograma se utilizan las mismas del Anexo 4.
FIGURA 7 in Relaciones espaciales y alimenticias del ensamblaje de reptiles del complejo cenagoso de Zapatosa, departamento del Cesar (Colombia)
FIGURA 7: Dendrograma de similitud que muestra las relaciones de sobreposición de hábitat entre las especies de reptiles del complejo cenagoso de Zapatosa. Para abreviaciones de las especies en el dendrograma se utilizan las mismas del Anexo 4.
FIGURA 4 in Relaciones espaciales y alimenticias del ensamblaje de reptiles del complejo cenagoso de Zapatosa, departamento del Cesar (Colombia)
FIGURA 4: Porcentaje de depredación de especies de lagartijas en los hábitats del área de estudio. (BP: Bosque casmófito, BS: Bosque seco, P: Palmar, BR: Bosque de ribera y SA: Sabana arbolada).
FIGURA 1 in Relaciones espaciales y alimenticias del ensamblaje de reptiles del complejo cenagoso de Zapatosa, departamento del Cesar (Colombia)
FIGURA 1: Mapa donde se muestran a grandes rasgos los sitios de muestreo en el complejo cenagoso de Zapatosa, departamento de Cesar, Colombia. Imagen tomada de Google-Earth, octubre de 2010.
FIGURE 3 in Reptile species composition in the Middle Gurguéia and comparison with inventories in the eastern Parnaíba River Basin, State of Piauí, Brazil
FIGURE 3: Dendrogram for similarity of lizard species composition in the Middle Gurguéia (MG) with previously studied areas in Piauí. The rule bar shows the Jaccard coefficient. BR: Barras, BT: Batalha, MG: Middle Gurguéia, PC: Picos, UU: Estação Ecológica do Uruçuí-Una, CA: Parque Nacional Serra da Capivara, CO: Parque Nacional Serra das Confusões. Castelo do Piauí (CP) and Parque Nacional Sete cidades (7C) were not included in this analysis.
FIGURE 4 in Reptile species composition in the Middle Gurguéia and comparison with inventories in the eastern Parnaíba River Basin, State of Piauí, Brazil
FIGURE 4: Dendrogram for similarity of snake species compositions in the Middle Gurguéia (MG) with other previously studied areas in Piauí. The rule bar shows the Jaccard coefficient. PC: Picos, CA: Parque Nacional Serra da Capivara, BR: Barras, BT: Batalha, CO: Parque Nacional Serra das Confusões, UU: Estação Ecológica do Uruçuí-Una, CP: Castelo do Piauí, 7C: Parque Nacional Sete Cidades.
FIGURE 1 in Reptile species composition in the Middle Gurguéia and comparison with inventories in the eastern Parnaíba River Basin, State of Piauí, Brazil
FIGURE 1: Study areas in the Middle Gurguéia and previously studied areas. (A): northeastern Brazil: Piauí (PI), Bahia (BA) and Maranhão (MA). Black dots show the locations where other studies were conducted: Barras (BR), Batalha (BT), Parque Nacional Sete Cidades (7C), Castelo do Piauí (CP), Picos (PC), Parque Nacional Serra da Capivara (CA), Parque Nacional Serra das Confusões (CO) and Estação Ecológica do Uruçuí-Una (UU); (B): The five municipalities in this study in the Middle Gurguéia (MG), Gurguéia River Basin, southeastern Piauí: 1: Alvorada do Gurguéia (AG), 2: Palmeira do Piauí (PP), 3: Cristino Castro (CC), 4: Bom Jesus (BJ) and 5: Redenção do Gurguéia (RG).
FIGURE 9 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 9. Fossil remains of Naja cf. romani from FP 1: A, venom fang (UBB V 969) in anterior view; B-G, presacral vertebrae (UBB V 970/1-4) in dorsal (B, F), ventral (C, G), lateral (D) and anterior (E) views; H-J, caudal vertebra (UBB V 970/5) in dorsal (H), anterior (I) and ventral (J) views. Scale bars (A; B-J) equal 2 mm.
FIGURE 8 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 8. Fossil snake vertebrae from FP 1: A-B, Scolecophidia indet. (UBB V 965/1-2) in dorsal (A) and ventral (B) views; C-I, Natrix sp. (UBB V 967/1-5) in dorsal (C, D, I), ventral (F), anterior (E) and lateral (G, H) views; J, Colubridae indet. (UBB V 968/1) in ventral view. Scale bars (A-B; C-J) equal 2 mm.
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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.