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英国老年男性肌肉力量、功率、肌肉横截面积与骨骼几何结构的关联

Associations of muscle force, power, cross-sectional muscle area and bone geometry in older UK men.

作者信息

Zengin Ayse, Pye Stephen R, Cook Michael J, Adams Judith E, Rawer Rainer, Wu Frederick C W, O'Neill Terence W, Ward Kate A

机构信息

Nutrition & Bone Health, Elsie Widdowson Laboratory, Medical Research Council Human Nutrition Research, Fulbourn Rd CB1 9NL, Cambridge, UK.

Arthritis Research UK Centre for Epidemiology, Division of Musculoskeletal and Dermatological Sciences, School of Biological Sciences, Faculty of Biology, Medicine, and Health, Manchester Academic Health Science Centre, The University of Manchester, Oxford Road, Manchester, M13 9PT, UK.

出版信息

J Cachexia Sarcopenia Muscle. 2017 Aug;8(4):598-606. doi: 10.1002/jcsm.12198. Epub 2017 May 4.

Abstract

BACKGROUND

Ageing is associated with sarcopenia, osteoporosis, and increased fall risk, all of which contribute to increased fracture risk. Mechanically, bone strength adapts in response to forces created by muscle contractions. Adaptations can be through changes in bone size, geometry, and bending strength. Muscle mass is often used as a surrogate for muscle force; however, force can be increased without changes in muscle mass. Increased fall risk with ageing has been associated with a decline in muscle power-which is a measure of mobility. The aims of this study were as follows: (i) to investigate the relationship between muscle parameters in the upper and lower limbs with age in UK men and the influence of ethnicity on these relationships; (ii) to examine the relationships between jump force/grip strength/cross-sectional muscle area (CSMA) with bone outcomes at the radius and tibia.

METHODS

White European, Black Afro-Caribbean, and South Asian men aged 40-79 years were recruited from Manchester, UK. Cortical bone mineral content, cross-sectional area, cortical area, cross-sectional moment of inertia, and CSMA were measured at the diaphysis of the radius and tibia using peripheral quantitative computed tomography. Lower limb jump force and power were measured from a single two-legged jump performed on a ground-reaction force platform. Grip strength was measured using a dynamometer. Associations between muscle and bone outcomes was determined using linear regression with adjustments for age, height, weight, and ethnicity.

RESULTS

Three hundred and one men were recruited. Jump force was negatively associated with age; for every 10 year increase in age, there was a 4% reduction in jump force (P < 0.0001). There was a significant age-ethnicity interaction for jump power (P = 0.039); after adjustments, this was attenuated (P = 0.088). For every 10 year increase in age, grip strength decreased by 11%. Jump force was positively associated with tibial bone outcomes: a 1 standard deviation greater jump force was associated with significantly higher cortical bone mineral content 3.1%, cross-sectional area 4.2%, cortical area 3.4%, and cross-sectional moment of inertia 6.8% (all P < 0.001). Cross-sectional muscle area of the lower leg was not associated with tibial bone outcomes. Both grip strength and CSMA of the arm were positively associated, to a similar extent, with radius diaphyseal bone outcomes.

CONCLUSIONS

Jump force and power are negatively associated with age in UK men. In the lower limb, the measurement of jump force is more strongly related to bone outcomes than CSMA. It is important to consider jump force and power when understanding the aetiology of bone loss and mobility in ageing men.

摘要

背景

衰老与肌肉减少症、骨质疏松症以及跌倒风险增加相关,所有这些都会导致骨折风险增加。从力学角度来看,骨强度会根据肌肉收缩产生的力进行适应性变化。这种适应性变化可以通过骨大小、几何形状和抗弯强度的改变来实现。肌肉质量常被用作肌肉力量的替代指标;然而,在肌肉质量不变的情况下力量也可以增加。随着年龄增长跌倒风险增加与肌肉力量下降有关,而肌肉力量是一种运动能力的衡量指标。本研究的目的如下:(i)调查英国男性上下肢肌肉参数与年龄之间的关系以及种族对这些关系的影响;(ii)研究跳跃力/握力/肌肉横截面积(CSMA)与桡骨和胫骨骨指标之间的关系。

方法

从英国曼彻斯特招募了年龄在40 - 79岁的白人、非洲裔加勒比黑人及南亚男性。使用外周定量计算机断层扫描测量桡骨和胫骨骨干的皮质骨矿物质含量、横截面积、皮质面积、截面惯性矩和CSMA。下肢跳跃力和功率通过在地面反作用力平台上进行的单次双腿跳跃来测量。握力使用测力计进行测量。肌肉和骨指标之间的关联通过线性回归确定,并对年龄、身高、体重和种族进行了调整。

结果

共招募了301名男性。跳跃力与年龄呈负相关;年龄每增加10岁,跳跃力降低4%(P < 0.0001)。跳跃功率存在显著的年龄 - 种族交互作用(P = 0.039);调整后,这种交互作用减弱(P = 0.088)。年龄每增加10岁,握力下降11%。跳跃力与胫骨骨指标呈正相关:跳跃力每增加1个标准差,皮质骨矿物质含量显著增加3.1%,横截面积增加4.2%,皮质面积增加3.4%,截面惯性矩增加6.8%(所有P < 0.001)。小腿的肌肉横截面积与胫骨骨指标无关。手臂的握力和CSMA均与桡骨干骨指标在相似程度上呈正相关。

结论

在英国男性中,跳跃力和功率与年龄呈负相关。在下肢,跳跃力的测量与骨指标的关系比CSMA更强。在理解老年男性骨质流失和运动能力的病因时,考虑跳跃力和功率很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8522/5566651/eb9b6674b74f/JCSM-8-598-g001.jpg

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