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人体腓肠肌在最大短暂稳态收缩过程中的运动单位放电频率。

Motor unit firing rates of the gastrocnemii during maximal brief steady-state contractions in humans.

作者信息

Graham Mitchell T, Rice Charles L, Dalton Brian H

机构信息

Canadian Centre for Activity and Aging, School of Kinesiology, Faculty of Health Sciences, The University of Western Ontario, London, Ontario, Canada.

Canadian Centre for Activity and Aging, School of Kinesiology, Faculty of Health Sciences, The University of Western Ontario, London, Ontario, Canada; Department of Anatomy and Cell Biology, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

J Electromyogr Kinesiol. 2016 Feb;26:82-7. doi: 10.1016/j.jelekin.2015.11.005. Epub 2015 Nov 30.

Abstract

The human triceps surae (soleus, medial (MG) and lateral (LG) gastrocnemii) is complex and important for posture and gait. The soleus exhibits markedly lower motor unit firing rates (MUFRs; ∼16Hz) during maximal voluntary isometric contraction (MVC) than other limb muscles, but this information is unknown for the MG and LG. During multiple visits, subjects performed a series of 5-7, ∼7-s plantar flexor MVCs with tungsten microelectrodes inserted into the MG and LG. During a separate testing session, another group of subjects performed submaximal isometric contractions at 25%, 50%, and 75% MVC with inserted fine-wires in the MG, LG and soleus. Maximum steady-state MUFRs for MG and LG (∼23Hz) were not different, but faster than prior reports for the soleus. No differences between the three triceps surae components were detected for 25% or 50% MVC, but at 75% MVC, the MG MUFRs were 31% greater than soleus. The triceps surae exhibit similar torque modulation strategies at <75% MVC, but to achieve higher contraction intensities (>75% MVC) the gastrocnemii rely on faster rates to generate maximal torque than the soleus. Therefore, the MG and LG exhibit a larger range of MUFR capacities.

摘要

人类小腿三头肌(比目鱼肌、内侧腓肠肌和外侧腓肠肌)结构复杂,对姿势和步态很重要。在最大自主等长收缩(MVC)过程中,比目鱼肌的运动单位放电频率(MUFRs;约16Hz)明显低于其他肢体肌肉,但内侧腓肠肌和外侧腓肠肌的这一信息尚不清楚。在多次就诊期间,受试者进行了一系列5 - 7次、每次约7秒的跖屈肌MVC,将钨微电极插入内侧腓肠肌和外侧腓肠肌。在另一次单独的测试中,另一组受试者在25%、50%和75%MVC水平下进行次最大等长收缩,将细金属丝插入内侧腓肠肌、外侧腓肠肌和比目鱼肌。内侧腓肠肌和外侧腓肠肌的最大稳态MUFRs(约23Hz)没有差异,但比之前报道的比目鱼肌更快。在25%或50%MVC时,未检测到小腿三头肌三个组成部分之间的差异,但在75%MVC时,内侧腓肠肌的MUFRs比目鱼肌高31%。在小于75%MVC时,小腿三头肌表现出相似的扭矩调节策略,但为了达到更高的收缩强度(>75%MVC),腓肠肌依靠更快的频率来产生最大扭矩,而比目鱼肌则不然。因此,内侧腓肠肌和外侧腓肠肌表现出更大的MUFR能力范围。

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