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肌肉力量可预测青少年骨强度:爱荷华州骨骼发育研究。

Muscle Power Predicts Adolescent Bone Strength: Iowa Bone Development Study.

作者信息

Janz Kathleen F, Letuchy Elena M, Burns Trudy L, Francis Shelby L, Levy Steven M

机构信息

1Department of Health and Human Physiology, College of Liberal Arts and Sciences, University of Iowa, Ames, IA;2Department of Epidemiology, College of Public Health, University of Iowa, Ames, IA; and 3Department of Preventive and Community Dentistry, College of Dentistry, University of Iowa, Ames, IA.

出版信息

Med Sci Sports Exerc. 2015 Oct;47(10):2201-6. doi: 10.1249/MSS.0000000000000648.

Abstract

PURPOSE

To assess association between lower body muscle power and bone strength as well as the mediating effect of muscle cross-sectional area (MCSA) on that association.

METHODS

Participants (141 males and 162 females) were approximately 17 yr. Muscle power was predicted using vertical jump and the Sayers equation. Using peripheral quantitative computed tomography (pQCT), bone strength indices were obtained at two locations of the tibia, corresponding to primary stressors acting upon each site: bone strength index for compression (BSI) at the distal 4% site; density-weighted polar section modulus strength-strain index (SSIp) and cortical bone area (CoA) at the 66% midshaft site for torsion. Muscle cross-sectional area was measured at the 66% site. Pearson bivariate and partial correlation coefficients were estimated to quantify the strength of the associations among variables. Direct and indirect mediation model effects were estimated, and 95% bootstrap confidence intervals were constructed to test the causal hypothesis. Height and maturity were examined as covariates.

RESULTS

Pearson correlation coefficients among muscle power, MCSA, and bone strength were statistically significant (P < 0.01) and ranged from r = 0.54 to r = 0.78. After adjustment for covariates, associations were reduced (r = 0.37 to 0.69) (P < 0.01). Mediation models for males for BSI, SSIp, and CoA accounted for 38%, 66%, and 54% of the variance in bone strength, respectively. Models for females for BSI, SSIp, and CoA accounted for 46%, 77%, and 66% of the variance, respectively.

CONCLUSIONS

We found strong and consistent associations as well as direct and indirect pathways, among muscle power, MCSA, and tibia strength. These results support the use of muscle power as a component of health-related fitness in bone health interventions for older adolescents.

摘要

目的

评估下肢肌肉力量与骨强度之间的关联,以及肌肉横截面积(MCSA)在该关联中的中介作用。

方法

参与者(141名男性和162名女性)年龄约为17岁。使用垂直跳和赛耶斯方程预测肌肉力量。通过外周定量计算机断层扫描(pQCT),在胫骨的两个位置获取骨强度指标,分别对应于作用于每个部位的主要应力:在远端4%部位的压缩骨强度指数(BSI);在66%中轴部位用于扭转的密度加权极惯性矩强度应变指数(SSIp)和皮质骨面积(CoA)。在66%部位测量肌肉横截面积。估计Pearson双变量和偏相关系数以量化变量之间关联的强度。估计直接和间接中介模型效应,并构建95%的自抽样置信区间以检验因果假设。将身高和成熟度作为协变量进行检验。

结果

肌肉力量、MCSA和骨强度之间的Pearson相关系数具有统计学意义(P < 0.01),范围从r = 0.54至r = 0.78。在对协变量进行调整后,关联有所降低(r = 0.37至0.69)(P < 0.01)。男性中关于BSI、SSIp和CoA的中介模型分别解释了骨强度变异的38%、66%和54%。女性中关于BSI、SSIp和CoA的模型分别解释了变异的46%、77%和66%。

结论

我们发现肌肉力量、MCSA和胫骨强度之间存在强烈且一致的关联以及直接和间接途径。这些结果支持在针对青少年的骨骼健康干预措施中,将肌肉力量作为与健康相关体能的一个组成部分。

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