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Fig. 15 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 15. Supratemporal fenestra of the referred specimen of Shamosuchus djadochtaensis IGM 100/ 1195 with accompanying interpretation of sutures. See appendix 5 for abbreviations.
Fig. 15. Elongate metacarpals 4 and 5 in Long-Legged Pursuit Carnivorans (Amphicyonidae, Daphoeninae) From The Early Miocene Of North America
Fig. 15. Elongate metacarpals 4 and 5 of (A) Borocyon neomexicanus (F:AM 68242) from Standing Rock Quarry and (B) B. robustum (F:AM 68254) from Blick Quarry, Sandoval Co., New Mexico, demonstrating that the Borocyon lineage persisted in the southwestern United States from latest Arikareean into the early Hemingfordian. The only Hemingfordian record of Borocyon in the Southwest are these two metacarpals from Blick Quarry.
Figs. 15–19 in The Extinct Fauna of Stingless Bees (Hymenoptera: Apidae: Meliponini) in Dominican Amber: Two New Species and Redescription of the Male of Proplebeia dominicana (Wille and Chandler)
Figs. 15–19. Proplebeia tantilla, sp. n. 15–17. holotype, male, AMNHDR141439, head, forewing, and tibia and tarsus III. 18, 19. paratype, worker, same amber piece, fragments of tibia and tarsus III, detail of rastellum, and mandible, detail of denticles.
Fig. 15 in The Os Navicular of Humans, Great Apes, OH 8, Hadar, and Oreopithecus: Function, Phylogeny, and Multivariate Analyses
Fig. 15. Contributions of the entoectocuneiform and sagittal taloectocuneiform angles (w and v respectively) to the relative set of the first through third metatarsal in closepacked position as seen in line drawings of the exploded left foot of a human (A) and of a gorilla (B) in medial view. The large sagittal taloectocuneiform angle in gorillas imparts a dorsiflexed set to the third metatarsal and is associated with a dorsiflexed talar head, i.e. small angle of talar neck inclination (Day and Wood 1968). The gorilla entoectocuneiform angle imparts a plantar set to the entocuneiform relative to the ectocuneiform and is associated with an abducted hallux, i.e. plantar divergence of the hallux relative to second (x) and third metatarsals (y). The human taloectocuneiform and entoectocuneiform angles are associated with a plantar flexed talar head (i.e., large angle of talar neck inclination), nearly aligned first to third metatarsals, and a longitudinal plantar arch. Due to a fixed transverse arch in humans, however, the long axis of the second and third metatarsals must have a more plantar inclination than the hallux, and the value of x and y are negative. Because the major axis of the navicular's talar facet is not necessarily held vertically, the sagittal taloectocuneiform and entoectocuneiform angles may also impart some degree of medial divergence to the hallux.
FIGURES 15, 16 in On Egg Eclosion and Larval Development in Euglossine Bees
FIGURES 15, 16. SEM micrographs of egg of Euglossa (Euglossa) hemichlora. 15. Surface of chorion from side showing faint hexagonal patterning. 16. Presumed front end of egg revealing presumed opening through the vitelline membrane.
FIGURES 12–15 in Leeches from Chiapas, Mexico, with a new species of Erpobdella (Hirudinida: Erpobdellidae)
FIGURES 12–15. Rhynchobdellida from Chiapas, Mexico. Helobdella elongata: 12. dorsal view, 13. ventral view. Helobdella octatestisaca: 14. dorsal view, 15. ventral view.
Fig. 15 in The Braincase In Paleozoic Symmoriiform And Cladoselachian Sharks
Fig. 15. View of anterior part of the orbit in ''Cobelodus'' showing the proposed arrangement of the efferent pseudobranchial artery.
Fig. 15 in Phyletic Diversification Of The Cormohipparion Occidentale Complex (Mammalia; Perissodactyla, Equidae), Late Miocene, North America, And The Origin Of The Old World Hippotherium Datum
Fig. 15. Log-ratio diagram of cranial dimensions of Cormohipparion matthewi compared with C. occidentale, XMas-Kat quarries, Merritt Dam Member, Ash Hollow Formation, Cherry County, Nebraska.
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. 40. Schaffneropsallus oaxacensis. A in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 40. Schaffneropsallus oaxacensis. A. Lateral view of head. B. Mesothoracic spiracle and metathoracic scent-efferent system. C. Detail of metathoracic scent-efferent evaporatory area. D. Frontolateral view of pretarsus. E. Lateral view of pygophore, tubercle at upper left. F. Detail of setae on tubercle of pygophore.
Fig. 43 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 43. Paralogy-free trees portraying biogeographic relationships of Phymatopsallus-group taxa (see text for explanation).
Fig. 32 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 32. Phymatopsallus patagoniae: Male genitalia (male 1, AMNH_PBI 00068597; male 2, 00068661; male 3, 00068652).
Fig. 30 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 30. Phymatopsallus acaciae: Male genitalia (male 1, AMNH_PBI 00062324; male 2, 00071888); female genitalia (AMNH_PBI 00097049).
Fig. 27. Knightopsallus portalensis. A in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 27. Knightopsallus portalensis. A. Lateral view of head. B. Mesothoracic spiracle and metathoracic scent-efferent system. C. Frontal view of pretarsus. D. Antennal segments 1 and 2. E. Lateral view of male abdomen, showing extruded vesica. F. Dorsal view of male pygophore (right paramere missing).
Fig. 22 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 22. Ceratopsallus septentrionalis: Male genitalia (upper, AMNH_PBI 00062810; lower, AMNH_PBI 00077235; vesicae drawn at 50% of scale of other structures).
Fig. 42 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 42. Phylogenetic relationships of Phymatopsallus-group taxa. Characters showing no homoplasy are indicated by filled circles; characters showing homoplasy are indicated by open circles (See text for explanation of methods).
Fig. 24. Cercocarpopsallus bispinosus. A in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 24. Cercocarpopsallus bispinosus. A. Lateral view of head. B. Mesothoracic spiracle and metathoracic scent-efferent system. C. Setae on hemelytron. D. Detail of patch of specialized setae on left side of male pygophore (arrow indicates low tubercle and setal patch on pygophore). E. Frontoventral view of pretarsus. F. Dorsal view of male pygophore.
Fig. 17 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 17. Ceratopsallus pintoi: Male genitalia (male 1, AMNH_PBI 00082262, vesica drawn at 50% scale of other structures; male 2, AMNH_PBI 00063239;); female genitalia (AMNH_PBI 00082902).
Fig. 18 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 18. Ceratopsallus plautus: Male genitalia (AMNH_PBI 00071806, vesica only; 00071801, other genitalic structures); female genitalia (AMNH_PBI 00071815).
Fig. 41 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 41. Schaffneropsallus oaxacensis: Male genitalia (AMNH_PBI 00058288; 00058287, right paramere only); female genitalia (AMNH_PBI 00058289).
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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.