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684 results for “Functional morphology”
Data and code from: Complete metamorphosis promotes morphological and functional diversity in Caudata
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Data from: Ecophenotypy, temporal and spatial fidelity, functional morphology, and physiological trade-offs among intertidal bivalves
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Integrative taxonomy, larval biology and functional morphology of the little known gall-forming coral endoparasite Petrarca (Thecostraca: Ascothoracida)
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Feeding ecology has a stronger evolutionary influence on functional morphology than on body mass in mammals
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Data from: Coordinated ARP2/3 and glycolytic activities regulate the morphological and functional fitness of human CD8+ T cells
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Data from: Functional morphology and biomechanics of an ontogenetic series of the Triassic cynodont <em>Brasilodon quadrangularis</em> and bite performance in the sister taxon of Mammaliformes
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Functional assessment of morphological homoplasy in stem-gnathostomes
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Functional morphology of the Ediacaran organism Tribrachidium heraldicum
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Data from: Malagasy cichlids differentially limit impacts of body shape evolution on oral jaw functional morphology
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Data from: Morphological and functional maturity of the oral jaws covary with offspring size in Trinidadian guppies
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Morphological measurements of the ant stinging apparatus associated with: Evolutionary simplification and functional shifts of the ant stinger
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Quantifying the complexity of plant reproductive structures reveals a history of morphological and functional integration
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Adding the third dimension to studies of parallel evolution of morphology and function: an exploration based on parapatric lake-stream stickleback
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Data from: Wood jam characteristics influence but do not fully explain wood jam morphologic functions
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Single-cell morphology encodes functional subtypes of senescence in aging human dermal fibroblasts
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Leveraging functional morphology to increase accuracy of body mass estimation: A study using canids
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Figure 22. A in Functional morphology of neck musculature in the Tyrannosauridae (Dinosauria, Theropoda) as determined via a hierarchical inferential approach
Figure 22. A, origins and insertions of mm. intercristales (top, light-fill shapes), mm. intertransversarii (dark-fill shapes) and an interpretation of dorsal, rib head origins (large light-filled shapes) of m. iliocostalis capitis, of Tyrannosaurus rex (AMNH 5027). B, moment arms for lateroflexion by mm. intertransversarii on C6–C8 of Tyrannosaurus rex (BHI 3033, ventral view).
Figure 7. A in Functional morphology of neck musculature in the Tyrannosauridae (Dinosauria, Theropoda) as determined via a hierarchical inferential approach
Figure 7. A, dorsal view of m. biventer cervicis (m. biv. c., dark outline) and m. longus colli dorsalis pars cranialis of Aquila chrysaetos. Note the tendon intervening between anterior and posterior bellies of m. biv. c. M. complexus has been removed. B, dorsal view of m. transversospinalis capitis (m. trans. cap., dark outline) of Alligator mississippiensis. Medial and lateral portions of m. trans. cap. in Alligator are not distinguished here. C, lateral view of m. trans. cap. of Alligator mississippiensis (dark outline). D, m. complexus (dark outline) and m. rectus capitis lateralis (light outline) of Pelicanus occidentalis in lateral view. E, m. complexus of Pelicanus occidentalis, outlined in dark grey on the right. This is a dorsal view, with anterior towards the top. F, dorsal view of dissected Alligator mississippiensis, with m. epistrpheo-capitis lateralis, m. spinocapitis posticus and m. transversospinalis cervicis outlined in grey. M. transversospinalis capitis has been removed. G, m. splenius capitis of Anas platyrhynchos, from C2 to the occiput, outlined in grey, in posterior view. M. complexus and m. biventer cervicis have been removed. H, m. epistropheo-capitis medialis/m. altoïdius capitis of Caiman crocodylus, outlined in grey. M. transversospinalis capitis and m. epistropheo-capitis lateralis have been removed.
Figure 6 in Functional morphology of neck musculature in the Tyrannosauridae (Dinosauria, Theropoda) as determined via a hierarchical inferential approach
Figure 6. Neck muscle origins and insertions in crocodilians. A, muscle attachments on C1–C9 of Caiman crocodylus. B, muscle insertions on the occiput of Caiman crocodylus. m. trans. cap., m. transversospinalis capitis; m. epi.-cap. lat., m. epstropheo-capitis lateralis; m. epi.-cap. med., m. epstropheo-capitis medialis; m. sp.cap. post., m. spinocapitis posticus; m. trans. cerv., m. transversospinalis cervicis; m. long. cerv., m. longissimus cervicis (m. articulares/m. tendinoarticulares); m. long. cap., m. longus capitis; m. long. cap. sup., m. longissimus capitis superficialis; m. long. cap. prof., m. longissimus capitis profundus; m. il. cap., m. iliocostalis capitis; m. il. cerv., m. iliocostalis cervicis.
Figure 21. A in Functional morphology of neck musculature in the Tyrannosauridae (Dinosauria, Theropoda) as determined via a hierarchical inferential approach
Figure 21. A, origin scars of m. longissimus capitis superficialis (C7–D1 parapophyses) and m. longissimus capitis profundus (C6–C3 parapophyses) of Tyrannosaurus rex (AMNH 5027). B, short moment arm of m. longissimus capitis superficialis for neck plus head dorsiflexion. C, paroccipital process insertions and moment arms of m. longissimus capitis superficialis on Daspletosaurus torosus (CMN 8506). D, basioccipital insertions and moment arms of m. longissimus capitis profundus on Daspletosaurus torosus (CMN 8506; the specimen is incomplete and the images are partly mirrored).
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Allen Brain Atlas
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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
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