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FIGURE 7 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 7. Fossil remains of Anguinae indet. sp. 2 from FP 1: A, fragmentary maxilla (UBB V 960/1) in lingual view; B-D, fragmentary dentaries (UBB V 960/2-4 in lingual views; E-F, osteoderms (UBB V 962/3-4) in dorsal view; G-H, presacral vertebra (UBB V 961/1) in dorsal and anterior views. Scale bar equals 2 mm.
FIGURE 6 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 6. Fossil remains of lacertids (A-F) and anguids (G-I) from FP 1: A-C, dentary fragments of Lacertidae indet. sp. 1 (UBB V 957/2-4) in lingual views; D, left dentary of Lacertidae indet. sp. 1 (UBB V 958) in lingual view; E-F, dentary fragments of Lacertidae indet. sp. 2 (UBB V 959/3-4) in lingual views; G-I, presacral vertebra of Anguinae indet. sp. 1 (UBB V 964/1) in ventral, lateral and anterior views; J, fragmentary osteoderm of Anguinae indet. sp. 1 (UBB V 964/2) in dorsal view. Scale bar equals 2 mm.
FIGURE 5 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 5. Fossil remains of Bufotes cf. viridis (A-F) and Pelophylax sp. (G-J) from FP 1: A, sacral vertebra (UBB V 950) in ventral view; B-C, distal fragments of humeri (UBB V 951/1-2) in ventral views; D-F, fragmentary ilia (UBB V 952/1-3) in lateral views; G-H, fragmentary frontoparietals (UBB V 953/1-2) in dorsal (G) and ventral (H) views; I, angulosplenial (UBB V 954/2) in dorsal view; J, fragmentary ilium (UBB V 956) in lateral view. Scale bar equals 2 mm.
FIGURE 4 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 4. Fossil remains of Latonia sp. (A, B) and Pelobates sp. (C-J) from FP 1: A-B, fragmentary ilia (UBB V 944/ 1-2) in lateral views; C, premaxilla (UBB V 945/1) in posterior view; D, angulosplenial (UBB V 946/3) in dorsal view; EF, fragmentary frontoparietal (UBB V 945/2) in dorsal (E) and ventral (F) views; G-H, fragmentary maxillae (UBB V 946/ 1-2 in lingual (G) and (H) labial views; I-J, presacral vertebra (UBB V 947) in ventral (I) and dorsal (J) views. Scale bar equals 2 mm.
FIGURE 3 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 3. Fossil remains of Triturus sp. from FP 1: A, atlas (UBB V 941) in ventral view; B-G, presacral vertebrae (UBB V 942/1-2) in dorsal (B, E), lateral (D, G) and ventral (C, D) views; H, proximal fragment of femur (UBB V 943/1); I, distal fragment of femur (UBB V 943/2). Scale bar equals 2 mm.
FIGURE 1. Geological setting. A in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 1. Geological setting. A, geological map of Moldova region, Romania and location of the Fălciu-Prut 1 fossil site (compiled after: Ionesi (1994) - geology; Săndulescu (1984), Răileanu et al. (2011) - tectonics; Haase et al. (2007) - loess cover); B, lithological log of the FP 1 fossil site.
FIGURE 2 in Amphibians and squamate reptiles from the late Miocene of Fălciu (Eastern Romania)
FIGURE 2. Fossil remains of Chelotriton sp. from FP 1: A-C, left oticooccipital (UBB V 939) in dorsal (A), ventral (B) and medial (C) views; D-E, fragmentary frontal (UBB V 940/1) in dorsal (D) and ventral (E) views; F-G, fragmentary dentary (UBB V 940/2) in labial (F) and lingual (G) views; H, rib fragment (UBB V 938/4) in lateral view; I-J, presacral vertebrae (UBB V 938/1-3) in ventral (I, J) and dorsal views (K). Abbreviations: coc, occipital condyle; fen, endolymphatic foramen; fov, fenestra ovalis; fpe, perilymphatic foramen; pb, basal process, VII, facial nerve foramen; VIII, auditory nerve foramina; IX + X, glossopharyngeal + vagus nerve foramen. Scale bar equals 2 mm.
Рис. 2. Ооцисты кокциΔий роΔа Eimeria, Isospora, Octosporella моΔифицированные, световая микроскопия (размеры увеΛичены в 400 раз, 1 ΔеΛение равно 10 мкм). A — ооцисты Eimeria изоΛированные из Testudo graeca из Апшеронской попуΛяции; B — ооцисты Isospora изоΛированные из Testudo graeca из Апшеронской попуΛяции; С — ооцисты Isospora изоΛированные из Teniadactylus caspius из Апшеронской попуΛяции; D — ооцисты Octosporella изоΛированные из Paralaudakia caucasia из Гобустанской попуΛяции. Автор: С. О. МамеΔова Fig. 2. Eimeria, Isospora, Octosporella oocysts (Magnification 1000 x, each segment corresponds to 10 μm): A — oocysts Eimeria found in Testudo graeca from Absheron population; B — oocysts Isospora found in Testudo graeca from Absheron population; C — oocysts Isospora found in Teniadactylus caspius from Absheron population; D — oocysts Octosporella found in Paralaudakia caucasia from Gobustan population. Author: S. O. Mamedova in Intestinal coccidia (Apicomplexa: Coccidia) in reptiles of Azerbaijan and anthropogenic influences on their prevalence
Рис. 2. Ооцисты кокциΔий роΔа Eimeria, Isospora, Octosporella моΔифицированные, световая микроскопия (размеры увеΛичены в 400 раз, 1 ΔеΛение равно 10 мкм). A — ооцисты Eimeria изоΛированные из Testudo graeca из Апшеронской попуΛяции; B — ооцисты Isospora изоΛированные из Testudo graeca из Апшеронской попуΛяции; С — ооцисты Isospora изоΛированные из Teniadactylus caspius из Апшеронской попуΛяции; D — ооцисты Octosporella изоΛированные из Paralaudakia caucasia из Гобустанской попуΛяции. Автор: С. О. МамеΔова Fig. 2. Eimeria, Isospora, Octosporella oocysts (Magnification 1000 x, each segment corresponds to 10 μm): A — oocysts Eimeria found in Testudo graeca from Absheron population; B — oocysts Isospora found in Testudo graeca from Absheron population; C — oocysts Isospora found in Teniadactylus caspius from Absheron population; D — oocysts Octosporella found in Paralaudakia caucasia from Gobustan population. Author: S. O. Mamedova
Рис. 1. Ооцисты криптоспориΔий моΔифицированные, световая микроскопия по метоΔу ЦиΛя — НиΛьсена (Henriksen, Pohlenz 1981) (размеры увеΛичены в 1000 раз, 1 ΔеΛение равно 10 мкм): A — ооцисты изоΛированные из Testudo graeca из Апшеронской попуΛяции; B — ооцисты изоΛированные из Paralaudakia caucasia из Гобустанской попуΛяции; С — ооцисты изоΛированные из Eremias arguta; D — ооцисты изоΛированные из Natrix tessellata из Апшеронской попуΛяции. Автор: С. О. МамеΔова Fig. 1. Cryptosporidium oocysts stained with carbol-fucsin (Henriksen, Pohlenz 1981) (Magnification 1000 x, each segment corresponds to 10 μm): A — oocysts found in Testudo graeca from Absheron population; B — oocysts found in Paralaudakia caucasia from Gobustan population; C — oocysts found in Eremias argute; D — oocysts found in Natrix tessellata from Absheron population. Author: S. O. Mamedova in Intestinal coccidia (Apicomplexa: Coccidia) in reptiles of Azerbaijan and anthropogenic influences on their prevalence
Рис. 1. Ооцисты криптоспориΔий моΔифицированные, световая микроскопия по метоΔу ЦиΛя — НиΛьсена (Henriksen, Pohlenz 1981) (размеры увеΛичены в 1000 раз, 1 ΔеΛение равно 10 мкм): A — ооцисты изоΛированные из Testudo graeca из Апшеронской попуΛяции; B — ооцисты изоΛированные из Paralaudakia caucasia из Гобустанской попуΛяции; С — ооцисты изоΛированные из Eremias arguta; D — ооцисты изоΛированные из Natrix tessellata из Апшеронской попуΛяции. Автор: С. О. МамеΔова Fig. 1. Cryptosporidium oocysts stained with carbol-fucsin (Henriksen, Pohlenz 1981) (Magnification 1000 x, each segment corresponds to 10 μm): A — oocysts found in Testudo graeca from Absheron population; B — oocysts found in Paralaudakia caucasia from Gobustan population; C — oocysts found in Eremias argute; D — oocysts found in Natrix tessellata from Absheron population. Author: S. O. Mamedova
Fig. 4 in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 4. Adult female Abbreviata hastaspicula. AE, anterior end; ME, muscular oesophagus; GE, glandular oesophagus; TV, tubular vulva; UB, eggs in the 4 uterine branches; A, anus; T, tail.
Fig. 3 in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 3. Male Abbreviata hastaspicula. (A) Posterior end, dorsoventral view, where S is the spicule. (B) T is the tip of right spicule, lateral view.
Fig. 5 in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 5. Section of stomach of Varanus Gouldii with an adult Abbreviata hastapicula. AT, apical tooth of A. hastaspicula.
Fig. 6 in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 6. The postulated complete life cycle of Abbreviata hastapicula. Thick arrows indicated the life cycle in the final host (life cycle elucidated in this paper): Firstly, eggs passed from the faeces of the larger lizards. Secondly, eggs containing first stage lava (e) are ingested by suitable arthropod intermediate hosts (e.g. Teleogryllus oceanicus), and the 1st stage larva developed into 3rd stage larva/larvae then encysted on the guts of arthropod intermediate hosts. Lastly, arthropod intermediate hosts are consumed by final/definitive host (larger lizard). Or alternatively, as shown by the dashed arrows (this is not yet confirmed), if the life cycle is achieved through paratenic hosts, the arthropod intermediate hosts would be consumed by the paratenic host (smaller lizards), and the infective larva(e) persist without essential development or growth until it is consumed by the final host (larger lizards).
Fig. 2 in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 2. Female Abbreviata hastaspicula. (A) tubular vulva, laying eggs, dorsal view. (B) Embryonated eggs in the uterus.
Fig. 1. A in The life cycle of the reptile-inhabiting nematode Abbreviata hastaspicula (Spirurida: Physalopteridae: Physalopterinae) in Australia
Fig. 1. A large number of Abbreviata hastapicula were found in the stomach of a control Varanus gouldii.
FIGURE 22. Acanthodactylus maculatus from 5 in Atlas of the Reptiles of Libya
FIGURE 22. Acanthodactylus maculatus from 5 km east of Al Jawsh, Nalut, Tripolitania, Libya, 2008. Photo © Roberto Sindaco.
FIGURE 24. Mesalina guttulata from 15 in Atlas of the Reptiles of Libya
FIGURE 24. Mesalina guttulata from 15 km north of Dirj, Nalut, Tripolitania, Libya, 2008. Photo © Roberto Sindaco.
FIGURE 20 in Atlas of the Reptiles of Libya
FIGURE 20. Tarentola deserti from Hotel Dar Ghadames, Gadamis, Nalut, Tripolitania, Libya, 2008. Photo © Roberto Sindaco.
FIGURE 17 in Atlas of the Reptiles of Libya
FIGURE 17. Stenodactylus sthenodactylus and egg from Um Al-Aranib, Murzuq, Fezzan, Libya. Photo © Adel Ibrahim.
FIGURE 15 in Atlas of the Reptiles of Libya
FIGURE 15. Chamaeleo chamaeleon from Farwah Island, Libya (33.1095, 11.7157), 2007. Photo courtesy of Natural History Museum of Crete © M. Avramakis.
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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.