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1 ximal physis and 39.2 mGy/MBq for the distal physis.
2 e was columnar arrangement of tensors in the physis.
3 s and parallel orientation of tensors in the physis.
4 2 values were measured in the distal femoral physis.
5 age and sex and with patency of the adjacent physis.
6 wed a widening of the proximal right femoral physis.
7 hysis and to detect edema in the area of the physis.
8 imal epiphysis and decreased in the proximal physis.
9 patients with a completely or partially open physis (110 femora, 102 tibiae) and in 56 femora and 60
10           Extension into the juxtaepiphyseal physis, a potential risk factor for growth arrest, is de
11 ilage doses of 50.0 mGy/MBq for the proximal physis and 39.2 mGy/MBq for the distal physis.
12 ing shows the columnar microstructure of the physis and adjacent metaphysis, and provides further ins
13 ine resulted in greater contrast between the physis and metaphysis (P < .05).
14                        Conclusion DTI of the physis and metaphysis shows greater tract length and vol
15 ctography resulted in parallel tracts in the physis and the adjacent metaphysis.
16 ane of the physis to assess the width of the physis and to detect edema in the area of the physis.
17 cation center, (c) epiphyseal cartilage, (d) physis, and (e) zone of provisional calcification.
18 ared between the center and periphery of the physis, and between the distal femur and proximal tibia.
19 es (including cartilage of the epiphysis and physis, and bone of the secondary ossification center an
20 of the secondary ossification center and its physis, and metaphyseal undulation increased later in ge
21 racture's close proximity to both the tibial physis as well as the attachment between the tibial emin
22 tion showed a widening of the right proximal physis below the right femoral head, with a medial and p
23 t is surgical, with stabilization across the physis by in-situ pinning being the gold standard.
24 indicates that the proliferating zone of the physis can be irradiated from multiple areas, which coul
25 ol than for gadopentetate dimeglumine in the physis, epiphyseal cartilage, and secondary ossification
26               The relative visibility of the physis, epiphyseal cartilage, secondary ossification cen
27 stress injuries includes injury to the bone, physis, epiphysis, and apophysis.
28                                       In the physis of the femur and tibia, a significant age-related
29 on of the secondary ossification center, (b) physis of the secondary ossification center, (c) epiphys
30       Regions of interest were placed in the physis of the tibia and femur, and in the epiphyseal and
31 l physis than in the flatter proximal tibial physis (P =.008).
32 of the secondary ossification center and its physis, prominence of the perichondrial structures (ie,
33 ion of SDF-1 into the rabbit proximal tibial physis results in early physeal closure, which is accomp
34 ndulating central part of the distal femoral physis than in the flatter proximal tibial physis (P =.0
35 ed to a plane orthoganol to the plane of the physis to assess the width of the physis and to detect e
36 eridol resulted in greater visibility of the physis, while gadopentetate dimeglumine resulted in grea
37 ral epiphysis (SCFE), a fracture through the physis with resultant slip of the epiphysis, is the most
38 nd the femoral head at the level of the open physis, with biomechanical and biochemical factors impli

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