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1 for gravitational assistance and to provide humeral abduction and adduction under cortical control.
6 antagonist Ro 41-5253 or AGN 193109 near the humeral anlagens in stage 21 (Day 3.5) or stage 27 chick
7 Fgf9(ScxCre) mice had smaller calcaneal and humeral apophyses, thinner cortical bone at the attachme
8 his functional diversity was achieved with a humeral architecture that was remarkably conserved durin
9 ghput bulk and single-cell RNA sequencing of humeral attachment cells revealed expression of hundreds
10 ire articular surface of unilateral proximal humeral condyles of skeletally mature rabbits was surgic
12 e throwing-to-nonthrowing arm differences in humeral diaphysis bone properties in professional baseba
14 ation of germline mutations in Facio-Scapulo-Humeral Dystrophy (FSHD) and in an unrelated development
15 aged 7-16 years) with nonincarcerated medial humeral epicondyle fractures and more than 2 mm of displ
18 riations are seen to be more dramatic in the humeral epiphysis (larger marrow volume fraction) than i
22 majority of patients with displaced proximal humeral fractures is unclear, but its use is increasing.
24 the increase in translation of the center of humeral head and glenohumeral contact area were associat
25 ower than the concentrations measured in the humeral head and neck regions (0.07 +/- 0.03 %ID/g, p <
28 of glenohumeral contact area, and center of humeral head during simulated pitching motion in collegi
29 the same plane; and pseudoglenoid, with the humeral head in articulation with the more posterior of
30 f the posterior glenoid; biconcave, with the humeral head in articulation with the posterior of two c
32 We compared the osteochondral units of the humeral head of marine and terrestrial mammals across sp
33 with active subjects muscle contraction, the humeral head remained precisely centered on the glenoid
36 CT analyses demonstrated that the center of humeral head translated in the opposite direction to tha
37 one of four categories: concentric, with the humeral head well centered on the glenoid fossa; flat, w
38 a, center of humeral head, and oblateness of humeral head were calculated from 3D bone models using c
39 There was no difference between glenoid and humeral head width fully and semiautomated 3D model meas
40 ngents (cranial tangent border </= 2 cm from humeral head) were used in 50% of patients (33 of 66) ra
41 nter of glenohumeral contact area, center of humeral head, and oblateness of humeral head were calcul
48 ee bioscaffolds, and three rabbits underwent humeral-head excision without bioscaffold replacement.
49 n absorbed dose to marrow in the femoral and humeral heads and the lumbar vertebrae (L3 and L4) which
53 the surface morphology of a rabbit proximal humeral joint was captured with laser scanning and recon
54 aungia range from 4,000 to 9,000 g, based on humeral length, humeral midshaft diameter, and tooth are
55 verse recent humans, were compared with both humeral lengths and estimated body masses (based on femo
56 However, when scaled to body masses, their humeral lengths are relatively short, and their clavicul
57 ertal clavicular lengths to their associated humeral lengths reflects long clavicles, short humeri, o
59 m 4,000 to 9,000 g, based on humeral length, humeral midshaft diameter, and tooth area by using extan
61 a number of diseases including facio-scapulo-humeral muscular dystrophy (FSHD), acute lymphoblastic l
63 causes loss of the wing anterior cross vein, humeral outgrowths, absence of halteres and eye pigmenta
64 ses showed that conformational change of the humeral polyethylene bushing was associated with the gen
65 is rotation, increased muscular leverage for humeral retraction, but not depression/adduction, and in
67 They fall into eight general categories: humeral sensory-related (subfornical organ and median pr
70 Patients contemplating treatment for closed humeral shaft fracture should be informed that two-third
72 of 321 adult patients with closed, displaced humeral shaft fracture were assessed for eligibility.
78 ior oblique coronal plane in relation to the humeral shaft with the elbows extended and a coronal pla
79 xtended and a coronal plane aligned with the humeral shaft with the elbows slightly flexed (20 degree
80 tended or the coronal plane aligned with the humeral shaft with the elbows slightly flexed allows acc
81 poid taxon, and that Proteopithecus exhibits humeral similarities to parapithecids that may be symple