首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Effects of unilateral strength training and detraining on bone mineral mass and estimated mechanical characteristics of the upper limb bones in young women.
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Effects of unilateral strength training and detraining on bone mineral mass and estimated mechanical characteristics of the upper limb bones in young women.

机译:单侧力量训练和减训练对年轻女性的骨矿物质质量和上肢骨力学特性的影响。

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摘要

The aims of this study were to examine the effects of 12 months unilateral high-resistance strength training and 8-month detraining on bone mineral content (BMC), density (BMD) and estimated mechanical characteristics of upper limb bones, and also to estimate consequent loading induced strains on forearm bone shafts. Thirteen female physiotherapy students (mean 23.8 +/- 5.0 yrs, 166 +/- 7 cm, 64.4 +/- 7 cm, 64.4 +/- 13.3 kg) trained their left upper limbs with dumbbells on average 2.8 times per week for 12 months, followed by eight months detraining. Nineteen students served as controls (mean 25.7 +/- 5.2 yrs, 165 +/- 4 cm, 62.1 +/- 7.0 kg). BMC, BMD, and bone width and estimated cortical wall thickness (CWT) were measured at five different sites in both upper extremities (proximal humerus, humeral shaft, radial shaft, ulnar shaft, and distal forearm) using dual energy x-ray absorptiometry (DXA) scanner. In addition, cross-sectional moment of inertia (CSMI) was estimated from DXA data. The maximal isometric strength of the upper extremities was measured with an arm flexion-extension dynamometer. The training increased significantly the flexion strength by 14% (p = 0.001). During the detraining period, all measured strength values in the training group decreased in both limbs with respect to values after training. Despite the clear effect on muscular strength, no significant intergroup differences were observed in BMC, BMD, bone width, CWT, or CSMI values at any measured site after the training or detraining period. The estimated loading-induced strains remained within customary loading, and the change in strain level was only 15%. In conclusion, this study indicated that using high-resistance strength training may not provide an effective osteogenic stimulus for bone formation and geometric changes in upper limb bones of young, healthy, adult women. The interaction of bones and muscles may play an important and relatively unrecognized role in the development of bone strength, suggesting that the entirebiomechanical environment should be carefully considered when evaluating the osteogenic efficiency of physical loading.
机译:这项研究的目的是检查12个月的单侧高强度力量训练和8个月的训练对上肢骨骼的骨矿物质含量(BMC),密度(BMD)和估计的机械特性的影响,并评估由此产生的结果。在前臂骨干上加载诱发的应变。 13名女性理疗学生(平均23.8 +/- 5.0岁,166 +/- 7厘米,64.4 +/- 7厘米,64.4 +/- 13.3公斤)在12个月内平均每周训练2.8次,以哑铃锻炼左上肢,接着是八个月的训练。十九名学生作为对照组(平均25.7 +/- 5.2岁,165 +/- 4厘米,62.1 +/- 7.0公斤)。使用双能X射线骨密度仪(BX),骨密度(BMD)和骨宽度以及估计的皮质壁厚度(CWT)在两个上肢的五个不同部位(肱骨近端,肱骨干,radial骨干,尺骨干和前臂远端)进行了测量( DXA)扫描仪。另外,根据DXA数据估算了截面惯性矩(CSMI)。用手臂屈伸测力计测量上肢的最大等轴测强度。训练显着提高了屈曲强度14%(p = 0.001)。在训练期间,相对于训练后的值,训练组中所有测得的力量值在双肢中均下降。尽管对肌肉力量有明显的影响,但是在训练或训练后的任何测量部位,BMC,BMD,骨宽度,CWT或CSMI值均未观察到明显的组间差异。估计的加载引起的应变保持在常规加载范围内,并且应变水平的变化仅为15%。总之,这项研究表明,使用高强度力量训练可能无法为年轻,健康,成年女性的上肢骨骼形成和几何变化提供有效的成骨刺激。骨骼和肌肉的相互作用可能在骨骼强度的发展中起着重要的作用,并且尚未得到公认,这表明在评估物理负荷的成骨效率时应仔细考虑整个生物力学环境。

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