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年轻、运动型男性在次最大和最大等长膝关节伸展过程中的双侧缺陷表现和肌电信号活动。

Bilateral deficit expressions and myoelectric signal activity during submaximal and maximal isometric knee extensions in young, athletic males.

作者信息

Kuruganti Usha, Murphy Tiernan

机构信息

Faculty of Kinesiology, University of New Brunswick, P.O. Box 4400, Fredericton, NB E3B 5A3, Canada.

出版信息

Eur J Appl Physiol. 2008 Apr;102(6):721-6. doi: 10.1007/s00421-007-0651-0. Epub 2007 Dec 21.

Abstract

The bilateral limb deficit (BLD) describes the difference in maximal or near maximal force generating capacity of muscles when they are contracted alone or in combination with the contralateral muscles. A deficit occurs when the summed unilateral force is greater than the bilateral force. This study examined the presence of the BLD during submaximal (25, 50, 75% of MVC) and maximal (100% MVC) isometric knee extensions in a group of young, athletic males (n = 6, mean age of 22 +/- 3 years, mean height = 177.7 +/- 6.4 cm, mean weight = 72.4 +/- 5.2 kg). Torque and myoelectric signal (MES) data were collected from three superficial muscles of the quadriceps (vastus lateralis, vastus medialis and rectus femoris) during submaximal and maximal isometric knee extensions and it was found that a similar BLD exists using either torque or MES data. MES data showed that there were differences between bilateral and the total unilateral isometric knee extension regardless of percent contraction. This suggests that the BLD may be due to neural mechanisms and that future studies should examine the relationship between torque and the corresponding MES activity.

摘要

双侧肢体力量差异(BLD)描述的是肌肉单独收缩或与对侧肌肉协同收缩时,其产生最大或接近最大力量的能力之间的差异。当单侧力量总和大于双侧力量时,就会出现这种差异。本研究调查了一组年轻、体格健壮的男性(n = 6,平均年龄22±3岁,平均身高 = 177.7±6.4厘米,平均体重 = 72.4±5.2千克)在次最大(最大自主收缩的25%、50%、75%)和最大(100%最大自主收缩)等长膝关节伸展过程中BLD的情况。在次最大和最大等长膝关节伸展过程中,从股四头肌的三块表层肌肉(股外侧肌、股内侧肌和股直肌)收集了扭矩和肌电信号(MES)数据,结果发现,使用扭矩或MES数据时,都存在类似的BLD。MES数据表明,无论收缩百分比如何,双侧等长膝关节伸展与单侧等长膝关节伸展总和之间均存在差异。这表明BLD可能是由神经机制引起的,未来的研究应探讨扭矩与相应MES活动之间的关系。

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