Finni Taija, Cheng Sulin
Neuromuscular Research Center, Department of Biology of Physical Activity, University of Jyväskylä, Jyväskylä, Finland.
J Appl Biomech. 2009 Nov;25(4):396-400. doi: 10.1123/jab.25.4.396.
The positions of EMG electrodes over the knee extensor muscles were examined in 19 healthy men using MR images; electrodes were placed according to the SENIAM (surface electromyography for non-invasive assessment of muscles) guidelines. From axial images, the medial and lateral borders of the muscles were identified, and the are length of the muscle surface was measured. The electrode location was expressed as a percentage value from the muscle's medial border. EMGs were recorded during isometric maximal contraction, squat jumps, and countermovement jumps and analyzed for cross-correlation. The results showed that variations in lateral positioning were greatest in vastus medialis (47% SD 11) and rectus femoris (68% SD 15). In vastus lateralis, the electrode was usually placed close to the rectus femoris (19% SD 6). The peak cross-correlation coefficient varied between 0.15 and 0.68, but was not associated with electrode location. It is recommended that careful consideration is given to the medial-lateral positioning of the vastus lateralis electrodes especially, so that the electrodes are positioned over the mid-muscle rather than in close proximity to rectus femoris.
利用磁共振成像对19名健康男性膝伸肌上肌电图电极的位置进行了检查;电极按照SENIAM(用于肌肉非侵入性评估的表面肌电图)指南放置。从轴向图像中识别出肌肉的内侧和外侧边界,并测量肌肉表面的弧长。电极位置以相对于肌肉内侧边界的百分比值表示。在等长最大收缩、深蹲跳和反向运动跳过程中记录肌电图,并分析互相关性。结果表明,股内侧肌(标准差47%,11)和股直肌(标准差68%,15)的外侧定位变化最大。在股外侧肌中,电极通常放置在靠近股直肌的位置(标准差19%,6)。互相关系数峰值在0.15至0.68之间变化,但与电极位置无关。尤其建议仔细考虑股外侧肌电极的内外侧定位,以便将电极放置在肌肉中部上方,而不是靠近股直肌的位置。