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Fig. 19 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 19. Tympanic contacts (black lines) with ventrolateral petrosal for Bos taurus (SB MAR 14) (Ruminantia, Bovidae), Ovis aries (SB MAR 30) (Ruminantia, Bovidae), Cervus elaphus (UC-MVZ 134134) (Ruminantia, Cervidae), and Odocoileus virginianus (SB MAR 20) (Ruminantia, Cervidae). Dotted lines indicate uncertain borders.
Fig. 18 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 18. Ventrolateral (tympanic) views of left petrosal of Bos taurus (SB MAR 14) (Ruminantia, Bovidae). Scale 5 1 cm. Areas of broken bone are hatched.
Fig. 20 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 20. Dorsomedial (cerebellar) views of left petrosal of Bos taurus (SB MAR 14) (Ruminantia, Bovidae). Scale 5 1 cm.
Fig. 17 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 17. Anterior views of left petrosals of Antilocapra americana (UC-MVZ 96100) (Ruminantia, Antilocapridae), Bos taurus (SB MAR 14). (Ruminantia, Bovidae), and Ovis aries (SB MAR 30) (Ruminantia, Bovidae). Ventrolateral surface is gray.
Fig. 15 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 15. Dorsolateral views of left petrosals of Antilocapra americana (UC-MVZ 96100) (Ruminantia, Antilocapridae), Bos taurus (SB MAR 14) (Ruminantia, Bovidae), and Ovis aries (SB MAR 30) (Ruminantia, Bovidae). Dorsomedial and ventrolateral surfaces are gray. Damaged areas are hatched.
Fig. 27 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 27. Anterior views of left petrosals of Cervus elaphus (UC-MVZ 134134) (Ruminantia, Cervidae), Odocoileus virginianus (SB MAR 20) (Ruminantia, Cervidae), and Giraffa camelopardalis (UC-MVZ 55146) (Ruminantia, Giraffidae). Ventrolateral surfaces are gray.
Fig. 8 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 8. Anterior views of left petrosals of †Protungulatum sp. (AMNH-VP 118359), Tragulus napu (AMNH-M 102872) (Ruminantia, Tragulidae), and †Leptomeryx sp. (AMNH-VP 53786) (Ruminantia, †Leptomerycidae). Gray indicates ventrolateral surface. Damaged areas are hatched.
Fig. 26 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 26. Ventromedial views of left petrosals of Cervus elaphus (UC-MVZ 134134) (Ruminantia, Cervidae), Odocoileus virginianus (SB MAR 20) (Ruminantia, Cervidae), and Giraffa camelopardalis (UC- MVZ 55146) (Ruminantia, Giraffidae). Dorsomedial and ventrolateral surfaces are gray.
Fig. 7 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 7. Ventromedial views of left petrosals of †Protungulatum sp. (AMNH-VP 118359), Tragulus napu (AMNH-M 102872) (Ruminantia, Tragulidae), and †Leptomeryx sp. (AMNH-VP 53786) (Ruminantia, †Leptomerycidae). Dorsomedial and ventrolateral surfaces are gray.
Fig. 6 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 6. Dorsolateral views of left petrosals of †Protungulatum sp. (AMNH-VP 118359) Tragulus napu (AMNH-M 102872) (Ruminantia, Tragulidae), and †Leptomeryx sp. (AMNH-VP 53786) (Ruminantia, †Leptomerycidae). Dorsomedial and ventrolateral surfaces are gray.
Fig. 5 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 5. Dorsomedial (cerebellar) views of left petrosal of †Protungulatum sp. (AMNH-VP 118359). Illustration above, CT scan below. Scale 5 1 cm.
Fig. 1 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 1. Strict consensus of 20 most parsimonious trees from the combined data analysis of molecular and phenotypic data of Spaulding et al. (2009). Gray taxa are extant; black taxa are extinct. Crown clades and two wholly extinct clades are indicated with brackets.
Fig. 2 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 2. Petrosals in situ in several artiodactylans. A. Dorsal view of skull of Antilocapra americana with posterior part of calvarium removed to illustrate the in situ orientation of the petrosal (right and left petrosals in situ; left petrosal outlined with dashes). The surface with the internal acoustic meatus is
Fig. 3 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 3. Ventrolateral (tympanic) views of left petrosal of †Protungulatum sp. (AMNH-VP 118359). Scale 5 1 cm. Damaged areas are hatched. Illustration above, CT scan below.
Fig. 16 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 16. Ventromedial views of left petrosals of Antilocapra americana (UC-MVZ 96100) (Ruminantia, Antilocapridae), Bos taurus (SB MAR 14) (Ruminantia, Bovidae), and Ovis aries (SB MAR 30) (Ruminantia, Bovidae). Dorsomedial and ventrolateral surfaces are gray. Damaged areas are hatched.
FIG. 18 in New ctenodactyloid rodents from the Erlian Basin, Nei Mongol, China, and the phylogenetic relationships of Eocene Asian ctenodactyloids
FIG. 18. Strict consensus of six most parsimonious trees generated in a phylogenetic analysis of ctenodactyloid interrelationships. See text for discussion.
FIG. 17 in New ctenodactyloid rodents from the Erlian Basin, Nei Mongol, China, and the phylogenetic relationships of Eocene Asian ctenodactyloids
FIG. 17. Mandibles and teeth of Chenomys orientalis. A, V17805.4, right p4; B, V17805.1, right m1–3; C, V17805.4, occlusal view of a right mandible with p4; D, V17805.3, occlusal view of a right mandible with m3; E, V17805.4, labial view of a right mandible with p4; F, V17805.2, occlusal view of a right mandible with m2–3; G, V17805.1, occlusal view of a right mandible with m1–3; H, V17805.1, labial view. A–B, C–F, and G–H each to common scale.
FIG. 15 in New ctenodactyloid rodents from the Erlian Basin, Nei Mongol, China, and the phylogenetic relationships of Eocene Asian ctenodactyloids
FIG. 15. Mandibles of Advenimus ulungurensis in occlusal view. A, V16499, a left mandible fragment with p4–m3; B, V16506, a left mandible fragment with p4–m3; C, V16499, labial view; D, V16506, labial view. A–B and C–D each to common scale.
FIG. 12 in New ctenodactyloid rodents from the Erlian Basin, Nei Mongol, China, and the phylogenetic relationships of Eocene Asian ctenodactyloids
FIG. 12. Cheek teeth of Yongshengomys extensus in occlusal view. A, V16504.4, right DP4; B, V16504.1, left M1 (or M2; holotype); C, V16504.25, right M1 (or M2).
FIG. 10 in New ctenodactyloid rodents from the Erlian Basin, Nei Mongol, China, and the phylogenetic relationships of Eocene Asian ctenodactyloids
FIG. 10. Tamquammys longus (V16505). A, ventral view; B, dorsal view; C, right lateral view; D, occlusal view of the right DP4–M3. A–C are to the same scale.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.