Rehab Neural Engineering Labs, University of Pittsburgh, Pittsburgh, PA, 15213, USA.
Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, 15213, USA.
Sci Rep. 2020 May 20;10(1):8377. doi: 10.1038/s41598-020-65167-x.
Wrist posture impacts the muscle lengths and moment arms of the extrinsic finger muscles that cross the wrist. As a result, the electromyographic (EMG) activity associated with digit movement at different wrist postures must also change. We sought to quantify the posture-dependence of extrinsic finger muscle activity using bipolar fine-wire electrodes inserted into the extrinsic finger muscles of able-bodied subjects during unrestricted wrist and finger movements across the entire range of motion. EMG activity of all the recorded finger muscles were significantly different (p < 0.05, ANOVA) when performing the same digit movement in five different wrist postures. Depending on the wrist posture, EMG activity changed by up to 70% in individual finger muscles for the same movement, with the highest levels of activity observed in finger extensors when the wrist was extended. Similarly, finger flexors were most active when the wrist was flexed. For the finger flexors, EMG variations with wrist posture were most prominent for index finger muscles, while the EMG activity of all finger extensor muscles were modulated in a similar way across all digits. In addition to comprehensively quantifying the effect of wrist posture on extrinsic finger EMG activity in able-bodied subjects, these results may contribute to designing control algorithms for myoelectric prosthetic hands in the future.
手腕姿势会影响穿过手腕的外在手指肌肉的长度和力臂。因此,在不同手腕姿势下,与手指运动相关的肌电图(EMG)活动也必须发生变化。我们试图使用插入到健康受试者外在手指肌肉中的双极细电线电极,在整个运动范围内不受限制地进行手腕和手指运动,来量化外在手指肌肉活动的姿势依赖性。当在五个不同的手腕姿势下进行相同的手指运动时,所有记录的手指肌肉的肌电图活动都有显著差异(p<0.05,方差分析)。取决于手腕姿势,对于相同的运动,单个手指肌肉的肌电图活动最多可变化 70%,当手腕伸展时,手指伸肌的活动水平最高。同样,当手腕弯曲时,手指屈肌的活动最活跃。对于手指屈肌,肌电图活动随手腕姿势的变化在食指肌肉中最为明显,而所有手指伸肌的肌电图活动在所有手指中都以相似的方式进行调节。除了全面量化手腕姿势对健康受试者外在手指 EMG 活动的影响外,这些结果可能有助于为未来的肌电假肢手设计控制算法。