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经颅磁刺激诱发的股四头肌机械反应

Mechano-responses of quadriceps muscles evoked by transcranial magnetic stimulation.

作者信息

Zakaria Zafirah, Mazlan Mazlina, Chung Tze Yang, Selvanayagam Victor S, Temesi John, Magenthran Vhinoth, Hamzaid Nur Azah

机构信息

Department of Biomedical Engineering, Faculty of Engineering, Universiti Malaya, Kuala Lumpur, Malaysia.

Department of Rehabilitation Medicine, Faculty of Medicine, Universiti Malaya, Kuala Lumpur, Malaysia.

出版信息

Biomed Tech (Berl). 2024 Sep 25;70(1):3-10. doi: 10.1515/bmt-2023-0501. Print 2025 Feb 25.

Abstract

Mechanomyography (MMG) may be used to quantify very small motor responses resulting from muscle activation, voluntary or involuntary. The purpose of this study was to investigate the MMG mean peak amplitude (MPA) and area under the curve (AUC) and the corresponding mechanical responses following delivery of transcranial magnetic stimulation (TMS) to the knee extensors. Fourteen adults (23 ± 1 years) received single TMS pulses at intensities from 30-80 % maximum stimulator output to elicit muscle responses in the relaxed knee extensors while seated. An accelerometer-based sensor was placed on the rectus femoris (RF) and vastus lateralis (VL) muscle bellies to measure the MMG signal. Pearson correlation revealed a positive linear relationship between MMG MPA and TMS intensity for RF (r=0.569; p<0.001) and VL (r=0.618; p<0.001). TMS intensity of ≥60 % maximum stimulator output produced significantly higher MPA than at 30 % TMS intensity and evoked measurable movement at the knee joint. MMG MPA was positively correlated to AUC (r=0.957 for RF and r=0.603 for VL; both p<0.001) and knee extension angle (r=0.596 for RF and r=0.675 for VL; both p<0.001). In conclusion, MMG captured knee extensor mechanical responses at all TMS intensities with the response increasing with increasing TMS intensity. These findings suggest that MMG can be an additional tool for assessing muscle activation.

摘要

肌动图(MMG)可用于量化由肌肉激活产生的非常小的运动反应,无论是自愿的还是非自愿的。本研究的目的是调查经颅磁刺激(TMS)作用于膝伸肌后,MMG的平均峰值幅度(MPA)和曲线下面积(AUC)以及相应的力学反应。14名成年人(23±1岁)在坐位时接受强度为最大刺激器输出的30%-80%的单次TMS脉冲,以诱发放松的膝伸肌的肌肉反应。一个基于加速度计的传感器被放置在股直肌(RF)和股外侧肌(VL)的肌腹上,以测量MMG信号。Pearson相关性分析显示,RF的MMG MPA与TMS强度之间存在正线性关系(r=0.569;p<0.001),VL的MMG MPA与TMS强度之间也存在正线性关系(r=0.618;p<0.001)。最大刺激器输出强度≥60%时的TMS强度产生的MPA明显高于30%TMS强度时,并在膝关节诱发了可测量的运动。MMG MPA与AUC呈正相关(RF的r=0.957,VL的r=0.603;p均<0.001),与膝关节伸展角度呈正相关(RF的r=0.596,VL的r=0.675;p均<0.001)。总之,MMG在所有TMS强度下均能捕捉到膝伸肌的力学反应,且反应随TMS强度的增加而增强。这些发现表明,MMG可以作为评估肌肉激活的一种额外工具。

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