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右侧或左侧食指快速运动时右侧斜方肌的单运动单位放电行为。

Single motor unit firing behavior in the right trapezius muscle during rapid movement of right or left index finger.

作者信息

Søgaard Karen, Olsen Henrik B, Blangsted Anne K, Sjøgaard Gisela

机构信息

Department of Sports Science and Clinical Biomechanics, University of Southern Denmark, Odense Denmark.

Outcome Europe, St-Prex Switzerland.

出版信息

Front Hum Neurosci. 2014 Nov 3;8:881. doi: 10.3389/fnhum.2014.00881. eCollection 2014.

Abstract

BACKGROUND

Computer work is associated with low level sustained activity in the trapezius muscle that may cause development of trapezius myalgia. Such a low level activity may be attention related or alternatively, be part of a general multi joint motor program providing stabilization of the shoulder joint as a biomechanical prerequisite for precise finger manipulation. This study examines single motor unit (MU) firing pattern in the right trapezius muscle during fast movements of ipsilateral or contralateral index finger. A modulation of the MU firing rate would support the existence of a general multi joint motor program, while a generally increased and continuous firing rate would support the attention related muscle activation.

METHOD

Twelve healthy female subjects were seated at a computer work place with elbows and forearms supported. Ten double clicks (DC) were performed with right and left index finger on a computer mouse instrumented with a trigger. Surface electromyographic signals (EMG) was recorded from right and left trapezius muscle. Intramuscular EMG was recorded with a quadripolar wire electrode inserted into the right trapezius. Surface EMG was analyzed as RMS and presented as %MVE. The intramuscular EMG signals were decomposed into individual MU action potential trains using a computer algorithm based on signal shape recognition and manual editing. Instantaneous firing rate (IFR) was calculated as the inverse of each inter-spike interval (ISI). All ISI shorter than 20 ms were defined as doublets. For all MU IFR was spike triggered averaged across the 10 DC to show the modulation during DC as well as for calculation of the cross correlation coefficient (CCC).

RESULTS

All subjects showed surface EMG activity in both right and left trapezius ranging from 1.8 %MVE to 2.5 %MVE. Regarding intramuscular EMG during right hand DC a total of 32 MUs were identified. Four subjects showed no MU activity. Four showed MU activity with low mean firing rate (MFR) with weak or no variations related to the timing of DC. Four subjects showed firing patterns with large modulation in IFR with a clear temporal relation to the DC. During left hand DC 15 MUs were identified in four subjects, for two of the subjects with IFR modulations clearly related to DC. During both ipsi- and contralateral DC, doublets occurred sporadically as well as related to DC Conclusion: In conclusion, DC with ipsi- and contralateral fast movements of the index finger was found to evoke biomechanically as well as attention related activity pattern in the trapezius muscle. Doublets were for three of the subjects found as an integrated part of MU activation in the trapezius muscle and for one subject temporarily related to DC.

摘要

背景

计算机工作与斜方肌的低水平持续活动相关,这可能导致斜方肌肌痛的发生。这种低水平活动可能与注意力有关,或者是一般多关节运动程序的一部分,该程序为肩关节提供稳定,作为精确手指操作的生物力学前提。本研究检查同侧或对侧食指快速运动时右斜方肌的单个运动单位(MU)放电模式。MU放电率的调制将支持一般多关节运动程序的存在,而普遍增加且持续的放电率将支持与注意力相关的肌肉激活。

方法

12名健康女性受试者坐在计算机工作台上,肘部和前臂得到支撑。用左右食指在装有触发器的计算机鼠标上进行10次双击(DC)。从左右斜方肌记录表面肌电图信号(EMG)。用插入右斜方肌的四极线状电极记录肌内EMG。表面EMG分析为均方根值(RMS),并表示为最大随意收缩百分比(%MVE)。使用基于信号形状识别和人工编辑的计算机算法将肌内EMG信号分解为单个MU动作电位序列。瞬时放电率(IFR)计算为每个峰间间隔(ISI)的倒数。所有短于20毫秒的ISI定义为双峰。对于所有MU,IFR在10次DC期间进行尖峰触发平均,以显示DC期间的调制以及用于计算互相关系数(CCC)。

结果

所有受试者的左右斜方肌均显示表面EMG活动,范围为1.8%MVE至2.5%MVE。关于右手DC期间的肌内EMG,共识别出32个MU。4名受试者未显示MU活动。4名受试者显示MU活动,平均放电率(MFR)低,与DC时间相关的变化微弱或无变化。4名受试者显示IFR有大的调制模式,与DC有明显的时间关系。在左手DC期间,在4名受试者中识别出15个MU,其中2名受试者的IFR调制与DC明显相关。在同侧和对侧DC期间,双峰偶尔出现,也与DC相关。结论:总之,发现食指同侧和对侧快速运动的DC会在斜方肌中引发生物力学以及与注意力相关的活动模式。发现3名受试者的双峰是斜方肌MU激活的一个组成部分,1名受试者的双峰与DC暂时相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/036a/4217388/ee46c6bf04bd/fnhum-08-00881-g001.jpg

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