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男性和女性的机电反应时间及力量发展速率。

Electro-mechanical response times and rate of force development in males and females.

作者信息

Bell D G, Jacobs I

出版信息

Med Sci Sports Exerc. 1986 Feb;18(1):31-6.

PMID:3959861
Abstract

Muscle force development is influenced by both central (pre-motor end plate) and peripheral (post-motor end plate) components. Conflicting results are available concerning gender-related differences in the central component. This study compared males and females with regard to the following electro-mechanical response variables: total reaction time, pre-motor time, electro-mechanical delay, and the rate of force development during a maximal voluntary isometric contraction (MVC) of the elbow flexors. Forty-six males and 40 females performed MVCs against a bar attached to a force transducer. Subjects were instructed to attempt to flex the elbow with maximal force as rapidly as possible after perceiving a visual stimulus. Surface electromyographic activity was recorded from the biceps brachii and was sampled simultaneously with the force transducer data at 2 kHz and stored digitally. For data analyses the subjects were separated into four groups based on the force generated during the MVC: weak females, weak males, strong females, and strong males. Neither total reaction time nor pre-motor time was significantly different across groups. The electro-mechanical delay for both male groups was significantly shorter than for both female groups. Electro-mechanical delay was weakly, but significantly, correlated with rate of force development and maximum force. During a single MVC the times required to attain 25, 50, 75, and 100% MVC were similar in all groups. The results suggest that at least part of the gender difference in maximum strength may be due to differences in electro-mechanical response times.

摘要

肌肉力量的发展受中枢(运动终板前)和外周(运动终板后)成分的影响。关于中枢成分中与性别相关的差异,存在相互矛盾的结果。本研究比较了男性和女性在以下机电反应变量方面的差异:总反应时间、运动前时间、机电延迟以及在肘关节屈肌最大自主等长收缩(MVC)过程中的力量发展速率。46名男性和40名女性对连接到力传感器的杆进行MVC。受试者被指示在感知到视觉刺激后,尽可能快地用最大力量尝试弯曲肘部。从肱二头肌记录表面肌电图活动,并与力传感器数据同时以2kHz进行采样并数字存储。为了进行数据分析,根据MVC期间产生的力量将受试者分为四组:弱女性、弱男性、强女性和强男性。各组之间的总反应时间和运动前时间均无显著差异。两个男性组的机电延迟均显著短于两个女性组。机电延迟与力量发展速率和最大力量呈弱但显著的相关性。在单次MVC期间,所有组达到25%、50%、75%和100%MVC所需的时间相似。结果表明,最大力量方面的性别差异至少部分可能归因于机电反应时间的差异。

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