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1 re-maxilla, nasal bone, mandible, tibia, and clavicle.
2 to compression between the first rib and the clavicle.
3 as exhibiting absolutely and relatively long clavicles.
4 , and to obtain high control rates above the clavicles.
5  mineralization and severe hypoplasia of the clavicles, a hallmark of the developmental disease cleid
6  remaining distance between the acromion and clavicle (ACD), as well as the coracoid process and clav
7 ies including hypoplasia of the mandible and clavicles, acro-osteolysis, cutaneous atrophy and lipody
8 y required by gliding occurs at the acromion-clavicle and glenohumeral joints, is different from and
9 abnormal tracer deposit in the region of the clavicle and sternum; thus, unenhanced thoracic computed
10 lle, bifid xiphoid process and hypoplasia of clavicle and zygomatic arch.
11 /- animals partially rescued the hypomorphic clavicles and undemineralized calvaria associated with R
12 ection of thoracic fractures (ribs, sternum, clavicle, and scapula), 93% for the detection of posteri
13 emory, physical evidence of trauma above the clavicles, and seizure.
14                 Heterozygotes do not develop clavicles, but are otherwise normal.
15 e (ACD), as well as the coracoid process and clavicle (CCD).
16                                              Clavicle defects are caused by disrupted endochondral bo
17 techniques used to repair displaced midshaft clavicle fractures are plate fixation or intramedullary
18 iting, amnesia, seizure, or trauma above the clavicle) had an LR of 0.08 (95% CI, 0.01-0.84), lowerin
19 order characterized by hypoplastic or absent clavicles, large fontanelles, dental anomalies and delay
20                                   Neandertal clavicle lengths, along with those of early modern human
21                                            A clavicle obscured 22% of the missed cancers.
22 illa (one), zygomatic arch (one), rib (one), clavicle (one), scapula (one), ulna (one), talus (one),
23 acture of the forearm, wrist, scaphoid bone, clavicle, or ankle at age 6-13 y.
24 tiation, a phenotype paralleled by premature clavicle ossification in Eif4a3 haploinsufficient embryo
25 tures, prenatal teeth, hypoplastic pubis and clavicles, osteopenia, and bent long bones.
26  mice, a Twist-2 null background rescues the clavicle phenotype of Runx2(+/-) mice, and Twist-1 or -2
27                  The Neandertal do have long clavicles relative their humeri, even though they fall w
28  also exhibited retarded ossification of the clavicles, ribs, vertebrae, and limbs, demonstrating tha
29 ental proportions, as well as aspects of the clavicles, scapulae, metacarpals, and appendicular propo
30 sufficiently complete Early Pleistocene Homo clavicles seem to have relative lengths also well within
31 eir associated humeral lengths reflects long clavicles, short humeri, or both.
32 gent to the shoulder mobility at the pivotal clavicle-sternal joint in marsupial and placental glider
33 g eleutherodonts possess rigid interclavicle-clavicle structures, convergent to the avian furculum, a
34 xhibit developmental defects in calvaria and clavicles that persist through post-natal growth.
35 ayed closure of the fontanel and hypoplastic clavicles that result from defective intramembranous oss
36 minent proximal girdle elements (scapula and clavicle) that brace the limb to the main trunk axis.
37 ous tissues as the catheter passed below the clavicle toward its entry into the vein.

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