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表面肌动图作为描述疲劳对肱二头肌运动单位激活策略影响的工具。历史依据与新证据。

The surface mechanomyogram as a tool to describe the influence of fatigue on biceps brachii motor unit activation strategy. Historical basis and novel evidence.

作者信息

Orizio Claudio, Gobbo Massimiliano, Diemont Bertrand, Esposito Fabio, Veicsteinas Arsenio

机构信息

Dipartimento di Scienze Biomediche e Biotecnologie, Sezione di Fisiologia Umana, Università di Brescia, Italy.

出版信息

Eur J Appl Physiol. 2003 Oct;90(3-4):326-36. doi: 10.1007/s00421-003-0924-1. Epub 2003 Aug 16.

Abstract

The surface mechanomyogram (MMG) (detectable at the muscle surface as MMG by accelerometers, piezoelectric contact sensors or other transducers) is the summation of the activity of single motor units (MUs). Each MU contribution is related to the pressure waves generated by the active muscle fibres. The first part of this article will review briefly the results obtained by our group studying the possible role of motor unit recruitment and firing rate in determining the characteristics of the MMG during stimulated and voluntary contractions. The second part of this article will study the MMG and EMG during a short isometric force ramp from 0 to 90% of the maximal voluntary contraction (MVC) in fresh and fatigued biceps brachii. The aim is to verify whether changes in motor unit activation strategy in voluntarily fatigued muscle could be specifically reflected in the time and frequency domain parameters of the MMG. MMG-RMS vs. %MVC: at fatigue the MMG-RMS did not present the well known increment, when effort level increases, followed by a clear decrement at near-maximal contraction levels. MMG-MF vs. %MVC: compared to fresh muscle the fatigued biceps brachii showed an MF trend significantly shifted towards lower values and the steeper MF increment, from 65 to 85% MVC, was not present. The alteration in the MMG and EMG parameters vs. %MVC relationships at fatigue seems to be related to the impossibility of recruiting fast, but more fatigable MUs, and to the lowering of the global MUs firing during the short isometric force ramp investigated.

摘要

表面肌动图(MMG)(通过加速度计、压电接触传感器或其他换能器在肌肉表面可检测为MMG)是单个运动单位(MU)活动的总和。每个运动单位的贡献与活跃肌纤维产生的压力波有关。本文的第一部分将简要回顾我们小组在研究运动单位募集和放电频率在确定刺激和自主收缩期间MMG特征方面可能发挥的作用时所获得的结果。本文的第二部分将研究新鲜和疲劳的肱二头肌在从0到最大自主收缩(MVC)的90%的短等长力斜坡过程中的MMG和肌电图(EMG)。目的是验证在自愿疲劳的肌肉中运动单位激活策略的变化是否能在MMG的时域和频域参数中得到具体体现。MMG均方根值(RMS)与MVC百分比的关系:在疲劳状态下,当用力水平增加时,MMG-RMS没有出现众所周知的增加,随后在接近最大收缩水平时明显下降。MMG平均频率(MF)与MVC百分比的关系:与新鲜肌肉相比,疲劳的肱二头肌显示MF趋势明显向较低值偏移,并且在65%至85%MVC之间不存在更陡峭的MF增加。疲劳时MMG和EMG参数与MVC百分比关系的改变似乎与无法募集快速但更易疲劳的运动单位以及在所研究的短等长力斜坡过程中整体运动单位放电的降低有关。

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