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优秀跳远运动员和短跑运动员骨强度的左右差异。

Side-to-side differences in bone strength in master jumpers and sprinters.

作者信息

Ireland A, Korhonen M, Heinonen A, Suominen H, Baur C, Stevens S, Degens H, Rittweger J

机构信息

Institute for Biomedical Research into Human Movement and Health, Manchester Metropolitan University, Manchester, United Kingdom.

出版信息

J Musculoskelet Neuronal Interact. 2011 Dec;11(4):298-305.

Abstract

INTRODUCTION

This study evaluated side-to-side difference in tibial bone structure, calf muscle cross-sectional area (CSA) and hopping force in master athletes as a result of training for sports with different magnitudes of inter-leg loading difference.

METHODS

Tibial bone parameters (at 4%, 14%, 38% and 66% tibial length proximal to distal end), muscle CSA (at 66% tibial length) and hopping forces of both legs of 51 master athletes (conditioned jumpers, conditioned triple jumpers, unconditioned jumpers, hurdlers and sprinters) were examined using pQCT. In epiphyseal 4% slice bone CSA (Ar.tot), total BMC (vBMC.tot), trabecular BMC (vBMC.tb) cortical BMC (vBMC.ct), and trabecular BMD (vBMD.tb) were measured. In diaphyseal slices, Ar.tot, vBMC.ct, cortical density (vBMD.ct), cross-sectional moment of inertia (CSMI) and calf muscle CSA (MuscA) were examined.

RESULTS

In conditioned jumpers, side-to-side differences in favour of take-off leg were found in 4% slice in vBMC.tb (+4.1%) (P<0.05). A side-to-side difference was found in 66% slice vBMC.ct and CSMI (both P<0.05), with conditioned jumper (+2.8% and 6.6%) and triple jumper (+2.7% and 7.2%) values higher than other groups.

CONCLUSION

The results suggest that regular training in high-impact sports with uneven lower limb loading results in side-to-side differences in skeletal adaptation independent of age and gender, suggesting that high-impact exercise is effective in maintaining bone strength throughout human lifespan.

摘要

引言

本研究评估了资深运动员由于参与具有不同双腿负荷差异程度的运动训练,其胫骨骨结构、小腿肌肉横截面积(CSA)和单腿跳跃力量的左右差异。

方法

使用外周定量计算机断层扫描(pQCT)检查了51名资深运动员(有条件的跳远运动员、有条件的三级跳远运动员、无条件的跳远运动员、跨栏运动员和短跑运动员)双腿的胫骨骨参数(在胫骨近端到远端长度的4%、14%、38%和66%处)、肌肉CSA(在胫骨长度的66%处)和单腿跳跃力量。在骨骺4%切片中测量骨横截面积(Ar.tot)、总骨矿物质含量(vBMC.tot)、小梁骨矿物质含量(vBMC.tb)、皮质骨矿物质含量(vBMC.ct)和小梁骨密度(vBMD.tb)。在骨干切片中,检查Ar.tot、vBMC.ct、皮质骨密度(vBMD.ct)、截面惯性矩(CSMI)和小腿肌肉CSA(MuscA)。

结果

在有条件的跳远运动员中,在4%切片的vBMC.tb中发现有利于起跳腿的左右差异(+4.1%)(P<0.05)。在66%切片的vBMC.ct和CSMI中发现了左右差异(均P<0.05),有条件的跳远运动员(+2.8%和6.6%)和三级跳远运动员(+2.7%和7.2%)的值高于其他组。

结论

结果表明,在下肢负荷不均的高冲击性运动中进行常规训练会导致骨骼适应性的左右差异,且与年龄和性别无关,这表明高冲击性运动在维持人类整个生命周期的骨骼强度方面是有效的。

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