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adolescent growth
It is well documented that the highest incidence occurs during the adolescent growth spurt, suggesting the role of an endocrine abnormality.
      
The greater impact of the disease on growth in early childhood than on adolescent growth could be explained by the fact that HR mainly affects the growth of the legs, the major contributor to body size in early childhood.
      
Over the following 4?months of adolescent growth, the scoliosis decreased to a mean of 43° at skeletal maturity; the decrease usually occurred in animals with less than 45° curves at tether release.
      
The girls ef this sample seem to pick up accelerated growth during the 11-12 year age interval to enter the adolescent growth spurt.
      
Integrins and Extracellular Matrix Proteins in the Human Childhood and Adolescent Growth Plate
      
The aim of this study was to compare the expression of integrins (a1, a2, a3, a5, a6, av, b1, b3, and b5 subunits) together with matching binding proteins in human childhood and adolescent growth plate cartilage using immunohistochemistry.
      
Perspectives on increased fractures during the human adolescent growth spurt: Summary of a new vital-biomechanical explanation
      
A shelf syndrome with pain or functional injury is uncommon, however, and cases that occur during the adolescent growth phase are rare.
      
This period was in accordance with the adolescent growth period, especially in males, with rapid growth of body size as observed based on by somatometrical measurements.
      
Males showed adolescent growth acceleration in body weight, with a peak at 7.86 yrs of age, but not in trunk length.
      
Adolescent growth and development in Japanese macaques (Macaca fuscata): Punctuated adolescent growth spurt by season
      
Adolescent growth of Japanese macaques (Macaca fuscata) was studied.
      
These growth spurts, in total, are considered to correspond with the adolescent growth spurt in humans.
      
Adolescent growth of Japanese macaques is characterized by a punctuation by slower growth and a later start, which is considered to be the product of adaptation to a strongly seasonal environment.
      
Decomposition of sex differences in adult size showed that the major contributor to adult the sex differences is the effect of the later onset of the adolescent growth spurt in boys than in girls.
      
VTJ data were aligned on age at peak height velocity (APHV) to attenuate the temporal fluctuations in inter-age correlations caused by differences in timing of the adolescent growth spurt.
      
Theoretical implications of the clinical findings are discussed with respect to Eriksonian and psychoanalytic formulations of late adolescent growth.
      
Biological maturation was estimated from the relative timing of the adolescent growth spurt.
      
Adolescent Growth in New Forms of Problem Behavior: Macro- and Micro-Peer Dynamics
      
Available data shows considerably larger adolescent growth rates in urban than in rural areas across East Asia and the Pacific.
      
 

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