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青少年生长突增期的身体活动与股骨颈强度:一项纵向分析

Physical activity and strength of the femoral neck during the adolescent growth spurt: a longitudinal analysis.

作者信息

Forwood Mark R, Baxter-Jones Adam D, Beck Thomas J, Mirwald Robert L, Howard Alf, Bailey Donald A

机构信息

School of Biomedical Sciences, Department of Anatomy and Developmental Biology, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Bone. 2006 Apr;38(4):576-83. doi: 10.1016/j.bone.2005.09.021. Epub 2006 Jan 4.

Abstract

Loading of the femoral neck (FN) is dominated by bending and compressive stresses. We hypothesize that adaptation of the FN to physical activity would be manifested in the cross-sectional area (CSA) and section modulus (Z) of bone, indices of axial and bending strength, respectively. We investigated the influence of physical activity on bone strength during adolescence using 7 years of longitudinal data from 109 boys and 121 girls from the Saskatchewan Paediatric Bone and Mineral Accrual Study (PBMAS). Physical activity data (PAC-Q physical activity inventory) and anthropometric measurements were taken every 6 months and DXA bone scans were measured annually (Hologic QDR2000, array mode). We applied hip structural analysis to derive strength and geometric indices of the femoral neck using DXA scans. To control for maturation, we determined a biological maturity age defined as years from age at peak height velocity (APHV). To account for the repeated measures within individual nature of longitudinal data, multilevel random effects regression analyses were used to analyze the data. When biological maturity age and body size (height and weight) were controlled, in both boys and girls, physical activity was a significant positive independent predictor of CSA and Z of the narrow region of the femoral neck (P < 0.05). There was no independent effect of physical activity on the subperiosteal width of the femoral neck. When leg length and leg lean mass were introduced into the random effects models to control for size and muscle mass of the leg (instead of height and weight), all significant effects of physical activity disappeared. Even among adolescents engaged in normal levels of physical activity, the statistically significant relationship between physical activity and indices of bone strength demonstrate that modifiable lifestyle factors like exercise play an important role in optimizing bone strength during the growing years. Physical activity differences were explained by the interdependence between activity and lean mass considerations. Physical activity is important for optimal development of bone strength.

摘要

股骨颈(FN)的负荷主要由弯曲应力和压缩应力主导。我们假设,FN对体力活动的适应性将分别体现在骨的横截面积(CSA)和截面模量(Z)上,这两个指标分别代表轴向强度和弯曲强度。我们利用来自萨斯喀彻温省儿童骨矿物质积累研究(PBMAS)的109名男孩和121名女孩的7年纵向数据,研究了青春期体力活动对骨强度的影响。每6个月收集一次体力活动数据(PAC-Q体力活动量表)和人体测量数据,每年进行一次双能X线吸收法(DXA)骨扫描(Hologic QDR2000,阵列模式)。我们应用髋部结构分析,通过DXA扫描得出股骨颈的强度和几何指标。为了控制成熟度,我们确定了一个生物成熟年龄,定义为从身高增长速度峰值(APHV)时的年龄起算的年数。考虑到纵向数据个体内部的重复测量性质,我们使用多级随机效应回归分析来分析数据。当控制生物成熟年龄和身体大小(身高和体重)时,在男孩和女孩中,体力活动都是股骨颈狭窄区域CSA和Z的显著正独立预测因素(P<0.05)。体力活动对股骨颈骨膜下宽度没有独立影响。当将腿长和腿部瘦体重纳入随机效应模型以控制腿部大小和肌肉量(而非身高和体重)时,体力活动的所有显著影响均消失。即使在从事正常体力活动水平的青少年中,体力活动与骨强度指标之间的统计学显著关系也表明,像运动这样可改变的生活方式因素在生长期间优化骨强度方面起着重要作用。体力活动差异可通过活动与瘦体重因素之间的相互依存关系来解释。体力活动对骨强度的最佳发育很重要。

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