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不同力水平下等长、向心和离心动作期间的运动单位激活模式。

Motor unit activation patterns during isometric, concentric and eccentric actions at different force levels.

作者信息

Linnamo V, Moritani T, Nicol C, Komi P V

机构信息

Neuromuscular Research Center, Department of Biology of Physical Activity, University of Jyväskylä, Jyväskylä, Finland.

出版信息

J Electromyogr Kinesiol. 2003 Feb;13(1):93-101. doi: 10.1016/s1050-6411(02)00063-9.

Abstract

Motor unit activation patterns were studied during four different force levels of concentric and eccentric actions. Eight male subjects performed concentric and eccentric forearm flexions with the movement range from 100 degrees to 60 degrees in concentric and from 100 degrees to 140 degrees elbow angle in eccentric actions. The movements were started either from zero preactivation or with isometric preactivation of the force levels of 20, 40, 60 and 80% MVC. The subjects were then instructed to maintain the corresponding relative force levels during the dynamic actions. Intramuscular and surface EMG was recorded from biceps brachii muscle. Altogether 28 motoneuron pools were analyzed using the intramuscular spike-amplitude frequency (ISAF) analysis technique of Moritani et al. The mean spike amplitude was lower and the mean spike frequency higher in the isometric preactivation phase than in the consequent concentric and eccentric actions. When the movements started with isometric preactivation the mean spike amplitude increased significantly (P<0.001) up to 80% in isometric and concentric actions but in eccentric actions the increase continued only up to 60% (P<0.01). The mean spike frequency in isometric preactivation and in concentric action with preactivation was lower only at the 20% force level (P<0.01) as compared to the other force levels while in eccentric action with preactivation the increase between the force levels was significant (P<0.01) up to 60%. When the movement was started without preactivation the mean spike amplitude at 20% and at 40% force level was higher (P<0.01) in eccentric action than in concentric actions. It was concluded that the recruitment threshold may be lower in dynamic as compared to isometric actions. The recruitment of fast motor units may continue to higher force levels in isometric and in concentric as in eccentric actions which, on the other hand, seems to achieve the higher forces by increasing the firing rate of the active units. At the lower force levels mean spike amplitude was higher in eccentric than in concentric actions which might indicate selective activation of fast motor units. This was, however, the case only when the movements were started without isometric preactivation.

摘要

在向心和离心动作的四种不同力量水平下研究了运动单位激活模式。八名男性受试者进行了向心和离心前臂屈曲,向心动作的运动范围为100度至60度,离心动作的肘关节角度范围为100度至140度。动作起始于零预激活,或采用20%、40%、60%和80%最大自主收缩(MVC)力量水平的等长预激活。然后指示受试者在动态动作过程中保持相应的相对力量水平。从肱二头肌记录肌内和表面肌电图。使用森谷等人的肌内尖峰幅度频率(ISAF)分析技术总共分析了28个运动神经元池。与随后的向心和离心动作相比,等长预激活阶段的平均尖峰幅度较低,平均尖峰频率较高。当动作从等长预激活开始时,等长和向心动作中的平均尖峰幅度显著增加(P<0.001),最高可达80%,但在离心动作中,增加仅持续到60%(P<0.01)。与其他力量水平相比,等长预激活和有预激活的向心动作中的平均尖峰频率仅在20%力量水平时较低(P<0.01),而在有预激活的离心动作中,力量水平之间的增加在高达60%时显著(P<0.01)。当动作无预激活开始时,离心动作中20%和40%力量水平的平均尖峰幅度高于向心动作(P<0.01)。得出的结论是,与等长动作相比,动态动作中的募集阈值可能更低。快速运动单位的募集在等长和向心动作中可能持续到更高的力量水平,而在离心动作中则不然,离心动作似乎通过增加活动单位的放电频率来实现更高的力量。在较低力量水平下,离心动作中的平均尖峰幅度高于向心动作,这可能表明快速运动单位的选择性激活。然而,只有当动作无等长预激活开始时才是这种情况。

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