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Fig. 1 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records

Fig. 1. Adult Lithobates catesbeianus swallowing an adult Boana raniceps in an artificial permanent pond within pasture area in southern Brazil.

opencc-by-4.0Dec 2019View details →
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Fig. 1 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 1. Cranial view of a left forearm (a), and lateral view of a left forearm (b). 1, m. brachioradialis; 2, m. extensor carpi radialis; 2', cranial belly; 2", caudal belly; 3, m. eXtensor digitorum communis; 3', tendon of the m. eXtensor digitorum communis; 4, m. eXtensor digitorum lateralis; 4', tendon of insertion of the m. extensor digitorum lateralis; 5, m. extensor carpi ulnaris; 5', tendon; 6, m. abductor digiti I longus; 7; extensor retinaculum.

opencc-by-4.0Jun 2022View details →
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Fig. 5 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 5. Lateral view of a left forearm where the m. brachioradialis had been retracted toward medial (a), and lateral view of a left forearm (b). 1, m. brachioradialis; 2, m. eXtensor carpi radialis; 3, m. eXtensor digitorum communis; 4, m. eXtensor digitorum lateralis; 5, m. eXtensor carpi ulnaris; 6, cranial interosseous artery; 7, m. supinator; 8, transverse cubital artery; 1', 2', 7', branches of the deep branch of radial nerve to the respective muscle.

opencc-by-4.0Jun 2022View details →
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Fig. 3 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 3. Dorsal view of a left hand, dorsal view of a right hand (b), deep dorsal view of a left hand (c). 1, Extensor digitorum communis tendon; 1', tendon to the digit I; 2, extensor digiti I et II tendons; 2', medial tendon, 2", lateral tendon; 3, extensor digitorum lateralis tendons; 3', medial; 3", intermediate; 3"', lateral; 4, eXtensor carpi radialis tendon; 4', tendon of the cranial belly; 4", tendon of the caudal belly; 5, EXtensor retinaculum.

opencc-by-4.0Jun 2022View details →
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Fig. 4 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 4. Deep lateral views of a two left forearms (a-b), and deep cranial view of a left forearm (c). 1, m. brachioradialis; 2, m. eXtensor carpi radialis; 3, m. supinator; 4, m. abductor digiti I longus; 4', tendon; 5, m. eXtensor digiti I et II; 5', medial tendon; 5", lateral tendon; 6, m. eXtensor carpi ulnaris.

opencc-by-4.0Jun 2022View details →
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Fig. 6 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 6. Lateral view of a left forearm where the m. extensor carpi ulnaris had been retracted toward cranial. 1, m. extensor carpi ulnaris; 1", ulnar head (variant accessory head) of the m. extensor carpi ulnaris; 2, M. extensor digiti I et II; 3, M. abductor digiti I longus.

opencc-by-4.0Jun 2022View details →
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Fig. 2 in Craniolateral forearm muscles of the crab-eating raccoon (Procyon cancrivorus) and a comparative review with other carnivorans

Fig. 2. Lateral views of a left forearm where the m. extensor digitorum communis had been retracted toward caudal to see the bellies of the m. extensor carpi radialis. 1, m. brachioradialis; 2, m. eXtensor carpi radialis; 2', cranial belly; 2", caudal belly; 3, m. eXtensor digitorum communis; 4, m. eXtensor digitorum lateralis; 5, m. extensor carpi ulnaris; 6, m. abductor digiti I longus.

opencc-by-4.0Jun 2022View details →
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Fig. 5 in A new mid-Permian burnetiamorph therapsid from the Main Karoo Basin of South Africa and a phylogenetic review of Burnetiamorpha

Fig. 5. Burnetiamorpha gen. et sp. indet. (BP/1/7098) from Springfontein, Beaufort West district, South Africa; upper Poortjie Member, Pristerognathus AZ, latest Capitanian. A. Anterior palate in ventral view, black arrow shows direction of view in B; white arrows show lateral displacement of interchoanal portion of the vomers. B. Interchoanal portion of vomers in right ventral view (B), showing the continuation of the downturned edges of the vomer extending anteriorly onto the premaxilla; pmr, ventral ridge of premaxilla at anterior margin of choana; vrl, ventral ridge of vomer laterally flared; vrm, ventral ridge of vomer medially folded. C. Specimen in posterior view. Photographs (A1, C1) and explanatory drawings (A2, C2).

opencc-by-4.0Nov 2016View details →
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Fig. 3 in A new mid-Permian burnetiamorph therapsid from the Main Karoo Basin of South Africa and a phylogenetic review of Burnetiamorpha

Fig. 3. Burnetiamorpha gen. et sp. indet. (BP/1/7098) from Springfontein, Beaufort West district, South Africa; upper Poortjie Member, Pristerognathus AZ, latest Capitanian; in dorsal (A) and left lateral (B) views. Photographs (A1, B1) and explanatory drawings (A2, B2).

opencc-by-4.0Nov 2016View details →
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Fig. 7 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 7. Gryphaeid oyster Pernostrea mesezhnikovi sp. nov., Lower Volgian, Lopsiya River, Northern Urals. A. TsSGM 2048/17, holotype, interior of right valve (A1), exterior of left valve with attached oyster (A2). B. TsSGM 2048/24, paratype, interior of right valve. C. TsSGM 2068/33, paratype, interior of left valve.

opencc-by-4.0Nov 2017View details →
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Fig. 11 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 11. Gryphaeid oyster Pernostrea? robusta sp. nov., Middle Volgian, Yatriya River, Subpolar Urals,. A. TsSGM 2068/37, interior of right valve. B. TsSGM 2068/36, interior of right valve. C. TsSGM 2068/35, interior of right valve. D. TsSGM 2068/38, interior of left valve attached to other oyster shell.

opencc-by-4.0Nov 2017View details →
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Fig. 10 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 10. Comparison of morphology Deltoideum vs. Pernostrea. A, C. Deltoideum delta (Smith, 1817) (labelled as "Ostrea deltoidea"), Kimmeridgian, La Hève, France. A. NHM 204314, interior of right valve. C. NHM 204314, interior of left valve. B, D. Pernostrea mesezhnikovi sp. nov., Lower Volgian, Lopsiya River, Northern Urals. B. TsSGM 2068/30, interior of right valve. D. TsSGM 2068/84, interior of left valve.

opencc-by-4.0Nov 2017View details →
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Fig. 3 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 3. Main morphological characters of oysters. A. Left valve of Phygraea (Gryphaeidae, Pycnodonteinae), TsSGM 2068/88, inner view. B. Left valve of Crassostrea (Flemingostreidae, Crassostreinae), TsSGM 2068/13, inner view. C. Left valve of Pernostrea (Gryphaeidae, Gryphaeinae), TsSGM 2068/2, inner view.

opencc-by-4.0Nov 2017View details →
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Fig. 6. Gryphaeid oysters from the subgenus Boreiodeltoideum. A, E in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 6. Gryphaeid oysters from the subgenus Boreiodeltoideum. A, E. Deltoideum (Boreiodeltoideum) borealis sp. nov. A. TsSGM 2068/31, paratype, Lower Kimmeridgian, Lopsiya River, Northern Urals; exterior (A1) and interior (A2) of left valve. E. TsSGM 150/3887, holotype, Lower Kimmeridgian, Khatanga depression, north of Eastern Siberia; interior of RV (E1) and exterior of LV (E2). B–D, F. Deltoideum (Boreiodeltoideum) praeanabarensis Zakharov, 1966), Lower Volgian, Dyabaka-Tari River, north of Eastern Siberia. B. TsSGM 2068/10, view on left (B1) and right (B2) valves. C. TsSGM 2068/57, interior of right valve. D. TsSGM 2068/8, exterior (D1) and interior (D2) of left valve. F. TsSGM 150/2031, interior of left valve.

opencc-by-4.0Nov 2017View details →
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Fig. 9 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 9. Gryphaeid oyster Pernostrea mesezhnikovi sp. nov., Lower Volgian, Lopsiya River, Northern Urals. A. TsSGM 2048/23, left (A1) and right (A2) valve views, view from posterior side (A3). B. TsSGM 2068/34, left (B1) and right (B2) valve views. C. TsSGM 2068/32, exterior (C1) and interior (C2) of left valve, view from anterior side (C3).

opencc-by-4.0Nov 2017View details →
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Fig. 5 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 5. Microstructure of studied gryphaeid oysters. A. Deltoideum delta (Smith, 1817), TsSGM 2068/87; Kimmeridgian, Dorset, England. B. Pernostrea uralensis (Zakharov, 1972), TsSGM 2068/45; Upper Volgian, Maurynya River, eastern slopes of the Northern Urals. Microstructure (A1, B1), cross section (A2, B2). RF, regularly foliated structure; HCF,?herringbone cross-foliated structure.

opencc-by-4.0Nov 2017View details →
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Fig. 1 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 1. Geographical position of the studied oysters locations: 1, Lopsiya River; 2, Tolya River; 3, Maurynya River; 4, Yatriya River; 5, Boyarka River; 6, Bol'shaya Romanikha River; 7, Dyabaka-Tari River (after Zakharov 1966; Zakharov and Mesezhnikov 1974).

opencc-by-4.0Nov 2017View details →
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Fig. 4 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 4. Measurements of morphometric parameters of oyster shells. D1, distance between posterior adductor muscle scar and anterior valve margin; D2, distance between posterior adductor muscle scar and posterior valve margin; D3, distance between posterior adductor muscle scar and ventral margin; D4, distance between posterior adductor muscle scar and dorsal margin; H, shell height; HCF, herringbone cross-foliated structure; Hla, ligament area height; Hpam, posterior adductor muscle scar height; L, shell length; LA, ligament area; LV, left valve; Lab, anterior bourrelet length; Lla, ligament area length; Lpam, posterior adductor muscle scar length; Lpb, posterior bourrelet length; Lr, resilifer length; PAM, posterior adductor muscle scar; RF, regularly foliated structure; RV, right valve.

opencc-by-4.0Nov 2017View details →
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Fig. 8 in Late Jurassic-Early Cretaceous oysters from Siberia: A systematic review

Fig. 8. Gryphaeid oyster Pernostrea mesezhnikovi sp. nov., Lower Volgian, Lopsiya River, Northern Urals. A. TsSGM 2068/28, paratype, details of right valve sculpture: fine radial striae (A1), exterior with Gastrochaenolites (A2), interior (A3). B. TsSGM 2048/21, interior of right valve. C. TsSGM 2068/29, interior of right valve.

opencc-by-4.0Nov 2017View details →
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Fig. 22 in Fossil freshwater sponges: Taxonomy, geographic distribution, and critical review

Fig. 22. Spicular remains of Spongillidae. Miocene, Lacustrine deposit at Oviatt Creek, northern Idaho, USA. Megascleres (A–F, S, W–AB), microscleres (L–N), and gemmuloscleres (G–K, P–V), ascribed originally to several genera: Anheteromeyenia, Corvospongilla, Eunapius, Radiospongilla, Spongilla, Trochospongilla; X, originally enlarged × 1200, AB, originally enlarged × 700. O. Axial canal of a broken spicule, originally enlarged × 5300. G, O, P, SEM images. Modified from Williams (1985).

opencc-by-4.0Sep 2017View details →

ScienceDex guides

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record