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155 results for “functional anatomy”
In Vivo Anatomy, Physiology, Mechanics and Function of the Lower Esophageal Sphincter
ClinicalTrials.gov study NCT00737802. IPD Sharing: NO. Countries: 1. Publications: 0.
Function Integrity of Neck Anatomy in Thyroid Surgery
ClinicalTrials.gov study NCT04666103. IPD Sharing: NO. Countries: 1. Publications: 0.
Validation of AI Lumbar Spine Anatomy Measureing Function
ClinicalTrials.gov study NCT06950411. IPD Sharing: NO. Countries: 1. Publications: 0.
FIG. 3 in Functional anatomy of male antennal glands in three species of Encyrtidae (Hymenoptera: Chalcidoidea)
FIG. 3. Asitus phragmitis male. (a) Lateral view of left antenna; (b) lateral view of apical antennomere (A9) showing the ventral concavity and the release and spread site (RSS), consisting in a single row of socketed peg-like structures; (c) close up view of a peg. Bars: a 5 100 mm, b 5 20 mm, c 5 5 mm.
FIG. 5 in Functional anatomy of male antennal glands in three species of Encyrtidae (Hymenoptera: Chalcidoidea)
FIG. 5. Rhopus meridionalis male. (a) Detail of a cross section of A8 showing one of the secretory cells with its nucleus (N) and the scale-like structure (RSS); Leptomastix dactylopii male; (b) cross section of A9 showing the thin glandular area (GA) underneath the socket of a scale-like structure; (c) oblique section of the distal portion of a scale; (d) detail of a pore (P) with the epicuticular ®laments (EF) opening on the scale surface. M, mitochondria. Bars: a 5 5 mm, b 5 2.5 mm, c 5 2 mm, d 5 0.25 mm.
Figure 3 in A non-aquatic otter (Mammalia, Carnivora, Mustelidae) from the Late Miocene (Vallesian, MN 10) of La Roma 2 (Alfambra, Teruel, Spain): systematics and functional anatomy
Figure 3. Proposed phylogeny of Teruelictis riparius within Mustelidae, illustrated by the strict consensus tree calculated from the three trees obtained. Letters in each node indicate the common synapomorphies. For character numbers, see Appendix 1. A: 6, 11, 16, 30, and 34; B: 3, 14, 18, 20, 21, and 24; C: 3, 4, 7, and 15; D: 8, 17, 19, 23, and 48; E: 9 and 15; F: 12, 16, and 18; G: 32, 42, 46, 50, 53, 54, and 56; H: 12, 28, 38, and 40; I: 8, 30, 33, 42, and 55; J: 18, 20, and 27; K: 7, 28, and 58; L: 1, 4, 26, 30, 33, and 37; M: 3, 6, 12, 16, 32, and 40; N: 3, 11, and 31; O: 13 and 21.
Figure 38 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 38. NHMUK RU A100 (BMNH A100). Unnamed heterodontosaur remains based on a partial skull that was originally referred to the genus Lycorhinus by Thulborn (1970b) – composite image manipulated to create the effect of a partial anterior skull viewed from left side. A, left premaxilla in medial view (reversed). B, left maxilla in lateral view. C, maxillary dentition in medial view (reversed). D, left dentary in medial view (reversed). Illustrations derived from Charig & Crompton (1974: figs 4–7).
Figure 21 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 21. Heterodontosaurus tucki Crompton & Charig, 1962. SAM-PK-K337 (holotype). A, the right maxillary dentition (M.2–M.12) in lateral view (see Fig. 22 for details of M.1–M.4); B, occlusal plan view of crowns M.8–M.11 to demonstrate the minor imbrication between adjacent crowns.
Figure 14 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 14. Heterodontosaurus tucki Crompton & Charig, 1962. Attempted reconstruction of the skull in occipital view. The post-temporal fenestra (pof) appears to be reduced to a narrow channel that enters the body of the neurocranium between the parietal, supraoccipital and (perhaps the squamosal more posteriorly). The smaller, but discrete vascular opening on the paroccipital wing is assumed to have served for passage of parts of the cranial vascular system (Romer, 1956). The indented regions (?pn) on the lower lateral corner of the paroccipital wing, and the other on the rear surface of the quadrate shaft, medial to the quadrate (paraquadratic) foramen, hint at the presence of cranial pneumatism (Witmer, 1997). For full list of abbreviations see end of paper.
Figure 37. A in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 37. A, Geranosaurus atavus Broom, 1911. SAM- PK-1871 (holotype). Upper image: dorsal view of the fragmentary (and subsequently damaged) remains of the anterior part of the dentaries and predentary; lower image, the extremely fragmentary right maxilla (with traces of the premaxilla), showing the broken crowns and roots of cheek teeth of a heterodontosaurid from Eastern Cape Province. Matrix on dentary block signified using irregular tone. B, Lycorhinus angustidens Haughton, 1924. SAM-PK-3606 (holotype). Partial left dentary, based on the original illustration by Haughton (re-drawn by Hopson, 1975: fig. 1a). The specimen can no longer be found (apart from the dentary crown) and is now represented only by a moulded impression of the original. C, L. angustidens Haughton, 1924. Lateral view of the left dentary dentition (from Hopson, 1975: fig. 1B) retrieved from an impression of the dentition left on the sandstone matrix preserved with the original specimen.
Figure 2 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 2. Heterodontosaurus tucki Crompton & Charig, 1962. SAM-PK-K337 (holotype). A, left lateral view drawn from slightly ventrolateral perspective. B, annotated outline drawing of the same (even grey tone represents matrix and/or plaster infill). See also Appendix 3. Abbreviations: af, internal mandibular adductor fossa; An, angular; Ar, articular; aof, antorbital fossa; Bo, basioccipital; Bs, basisphenoid; bsf, basisphenoid flange; bst, basisphenoid tuber; Co, coronoid; D, dentary; fm, foramen magnum (internal wall of right side) imf, internal mandibular fenestra; lbpt, left basipterygoid process; Ls, laterosphenoid; Mx, maxilla; N, nasal; nf, narial fossa; Os, orbitosphenoid; ovc, occipital vascular canal; Pa, parietal; Part, prearticular; Pd, predentary; pocc, paroccipital; Pro/Op, proötic-opisthotic; Prs –?presphenoid; Psp, parasphenoid; Pt, pterygoid (right); ptf, pterygoid flange; ptmr, pterygoid medial ridge; Q, quadrate; qf, quadrate (paraquadratic) foramen; Qj, quadratojugal; qpt, quadrate wing of the pterygoid; rbpta, right basipterygoid articular facet; S, supraoccipital; Sp, splenial; Sq, squamosal (broken fragment); V, trigeminal fossa (cranial nerve 5).
Figure 1 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 1. Heterodontosaurus tucki Crompton & Charig, 1962. SAM-PK-K337 (holotype). A, right lateral view drawn from the perspective in which the skull roof is aligned to the horizontal plane. B, annotated outline drawing of the same (even grey tone represents adhering matrix and/or plaster infill). See also Appendix 3. Abbreviations: An, angular; aof, antorbital fossa; apf, anterior premaxillary foramen; Ar, articular; D, dentary; emf, external mandibular fenestra; itf, infratemporal fenestra; J, jugal; jb, jugal boss; jp, ventrolateral jugal process; Mx, maxilla; mxr, lateral maxillary ridge; N, nasal; nf, narial fossa; nsul, internasal sulcus; paf, posterior antorbital fenestra; Pd, predentary; Pf, prefrontal; Pmx, premaxilla; Po, postorbital; por, postorbital ridge; Ppb, palpebral; Q, quadrate; qf, quadrate (paraquadratic) foramen; Qj, quadratojugal; Sa, surangular; sc, sagittal crest of the parietal; Sq, squamosal; sqr, squamosal ridge.
Figure 20 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 20. Heterodontosaurus tucki Crompton & Charig, 1962. SAM-PK-K337 (holotype). Anterior dentition preserved on the right side of the skull (based on a photograph taken during early preparation – prior to the complete removal of matrix from the lateral surface of the dentary caniniform. Note, the first premaxillary caniniform is not preserved on this side of the skull; the first premaxillary incisiform is only preserved on the left side of the skull. Inset diagram: sketch of the profiles of the left premaxillary dentition of SAM-PK-K337 (prepared by A. W. C./A. J. C.). For full list of abbreviations see end of paper.
Figure 30 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 30. Heterodontosaurus tucki. SAM-PK-K1334 (referred specimen). Posterior portion of the left maxilla. Segmented image prepared from computed tomography scans of the original. A, lateral aspect. Bones displayed as grey, erupted crowns shown in yellow. B, semi-transparent image of the maxilla to show the extent and arrangement of individual teeth in the maxilla. Red areas indicate the presence of replacement crowns embedded within the body of the maxilla. For full list of abbreviations see end of paper.
The Importance of Thymus Anatomy to the Radical Resection of Thyroid Cancer Surgery and the Protection of Parathyroid Function
ClinicalTrials.gov study NCT06851260. IPD Sharing: Not stated. Countries: 0. Publications: 0.
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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.