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小提琴演奏者左前臂高密度表面肌电图与指压分析:一项可行性研究。

Analysis of High-Density Surface EMG and Finger Pressure in the Left Forearm of Violin Players: A Feasibility Study.

作者信息

Cattarello Paolo, Merletti Roberto, Petracca Francesco

机构信息

LISiN, Dep. of Electronics and Telecommunications, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.

出版信息

Med Probl Perform Art. 2017 Sep;32(3):139-151. doi: 10.21091/mppa.2017.3023.

Abstract

Wrist and finger flexor muscles of the left hand were evaluated using high-density surface EMG (HDsEMG) in 17 violin players. Pressure sensors also were mounted below the second string of the violin to evaluate, simultaneously, finger pressure. Electrode grid size was 110x70 mm (12x8 electrodes with interelectrode distance=10 mm and Ø=3 mm). The study objective was to observe the activation patterns of these muscles while the violinists sequentially played four notes--SI (B), DO# (C#), RE (D), MI (E)--at 2 bows/s (one bow up in 0.5 s and one down in 0.5 s) and 4 bows/s on the second string, while producing a constant (CONST) or ramp (RAMP) sound volume. HDsEMG images obtained while playing the notes were compared with those obtained during isometric radial or ulnar flexion of the wrist or fingers. Two image descriptors provided information on image differences. Results showed that the technique was reliable and provided reliable signals, and that recognizably different sEMG images could be associated with the four notes tested, despite the variability within and between subjects playing the same note. sEMG activity of the left hand muscles and pressure on the string in the RAMP task were strongly affected in some individuals by the sound volume (controlled by the right hand) and much less in other individuals. These findings question whether there is an individual or generally optimal way of pressing violin strings with the left hand. The answer to this question might substantially modify the teaching of string instruments.

摘要

在17名小提琴演奏者中,使用高密度表面肌电图(HDsEMG)对左手的腕部和手指屈肌进行了评估。同时,在小提琴的第二根弦下方安装了压力传感器,以评估手指压力。电极网格尺寸为110x70毫米(12x8个电极,电极间距=10毫米,直径=3毫米)。研究目的是观察小提琴演奏者在第二根弦上以每秒2弓(一弓向上0.5秒,一弓向下0.5秒)和每秒4弓的速度依次演奏四个音符——SI(B)、DO#(C#)、RE(D)、MI(E)时,这些肌肉的激活模式,同时产生恒定(CONST)或渐变(RAMP)音量。将演奏音符时获得的HDsEMG图像与手腕或手指等长桡侧或尺侧屈曲时获得的图像进行比较。两个图像描述符提供了关于图像差异的信息。结果表明,该技术可靠且能提供可靠的信号,尽管演奏相同音符的受试者内部和之间存在差异,但仍能识别出与四个测试音符相关的不同表面肌电图图像。在RAMP任务中,一些个体左手肌肉的表面肌电图活动和琴弦上的压力受音量(由右手控制)的影响很大,而在其他个体中影响较小。这些发现质疑是否存在一种个体的或普遍最佳的用左手按压小提琴弦的方式。这个问题的答案可能会极大地改变弦乐器的教学方法。

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