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基于羽状肌模拟表面肌电图估计平均肌纤维传导速度

Estimation of average muscle fiber conduction velocity from simulated surface EMG in pinnate muscles.

作者信息

Mesin Luca, Damiano Luisa, Farina Dario

机构信息

Laboratorio di Ingegneria del Sistema Neuromuscolare (LISiN), Dipartimento di Elettronica, Politecnico di Torino, Torino, Italy.

出版信息

J Neurosci Methods. 2007 Mar 15;160(2):327-34. doi: 10.1016/j.jneumeth.2006.09.015. Epub 2006 Oct 30.

Abstract

The aim of this simulation study was to assess the bias in estimating muscle fiber conduction velocity (CV) from surface electromyographic (EMG) signals in muscles with one and two pinnation angles. The volume conductor was a layered medium simulating anisotropic muscle tissue and isotropic homogeneous subcutaneous tissue. The muscle tissue was homogeneous for one pinnation angle and inhomogeneous for bipinnate muscles (two fiber directions). Interference EMG signals were obtained by simulating recruitment thresholds and discharge patterns of a set of 100 and 200 motor units for the pinnate and bipinnate muscle, respectively (15 degrees pinnation angel in both cases). Without subcutaneous layer and muscle fibers with CV 4m/s, average CV estimates from the pinnate (bipinnate) muscle were 4.81+/-0.18 m/s (4.80+/-0.18 m/s) for bipolar, 4.71+/-0.19 m/s (4.71+/-0.12 m/s) for double differential, and 4.78+/-0.16 m/s (4.79+/-0.15m/s) for Laplacian recordings. When subcutaneous layer was added (thickness 1mm) in the same conditions, estimated CV values were 4.93+/-0.25 m/s (5.16+/-0.41 m/s), 4.70+/-0.21 m/s (4.83+/-0.33 m/s), and 4.89+/-0.21 m/s (4.99+/-0.39 m/s), for the three recording systems, respectively. The main factor biasing CV estimates was the propagation of action potentials in the two directions which influenced the recording due to the scatter of the projection of end-plate and tendon locations along the fiber direction, as a consequence of pinnation. The same problem arises in muscles with the line of innervation zone locations not perpendicular to fiber direction. These results indicate an important limitation in reliability of CV estimates from the interference EMG when the innervation zone and tendon locations are not distributed perpendicular to fiber direction.

摘要

本模拟研究的目的是评估在具有单羽状角和双羽状角的肌肉中,从表面肌电图(EMG)信号估计肌纤维传导速度(CV)时的偏差。容积导体是一种分层介质,模拟各向异性肌肉组织和各向同性均匀皮下组织。对于单羽状角,肌肉组织是均匀的;对于双羽状肌(两个纤维方向),肌肉组织是不均匀的。通过分别模拟单羽状肌和双羽状肌的一组100个和200个运动单位的募集阈值和放电模式(两种情况下羽状角均为15度),获得干扰EMG信号。在没有皮下层和CV为4m/s的肌纤维的情况下,对于双极记录,单羽状(双羽状)肌肉的平均CV估计值分别为4.81±0.18m/s(4.80±0.18m/s),对于双差分记录为4.71±0.19m/s(4.71±0.12m/s),对于拉普拉斯记录为4.78±0.16m/s(4.79±0.15m/s)。在相同条件下添加皮下层(厚度1mm)时,三种记录系统的估计CV值分别为4.93±0.25m/s(5.16±0.41m/s)、4.70±0.21m/s(4.83±0.33m/s)和4.89±0.21m/s(4.99±0.39m/s)。使CV估计产生偏差的主要因素是动作电位在两个方向上的传播,由于羽状化,终板和肌腱位置沿纤维方向的投影散射,从而影响记录。在神经支配区位置线不垂直于纤维方向的肌肉中也会出现同样的问题。这些结果表明,当神经支配区和肌腱位置不垂直于纤维方向分布时,从干扰EMG估计CV的可靠性存在重要局限性。

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