Department of Physiology, University of Arizona, Tucson, AZ, United States of America.
Department of Neuroscience, University of Arizona, Tucson, AZ, United States of America.
J Neural Eng. 2018 Apr;15(2):026001. doi: 10.1088/1741-2552/aa9820.
The maximum muscle forces that can be evoked using functional electrical stimulation (FES) are relatively modest. The reason for this weakness is not fully understood but could be partly related to the widespread distribution of motor nerve branches within muscle. As such, a single stimulating electrode (as is conventionally used) may be incapable of activating the entire array of motor axons supplying a muscle. Therefore, the objective of this study was to determine whether stimulating a muscle with more than one source of current could boost force above that achievable with a single source.
We compared the maximum isometric forces that could be evoked in the anterior deltoid of anesthetized monkeys using one or two intramuscular electrodes. We also evaluated whether temporally interleaved stimulation between two electrodes might reduce fatigue during prolonged activity compared to synchronized stimulation through two electrodes.
We found that dual electrode stimulation consistently produced greater force (~50% greater on average) than maximal stimulation with single electrodes. No differences, however, were found in the fatigue responses using interleaved versus synchronized stimulation.
It seems reasonable to consider using multi-electrode stimulation to augment the force-generating capacity of muscles and thereby increase the utility of FES systems.
使用功能性电刺激(FES)可引发的最大肌肉力量相对较小。造成这种弱点的原因尚不完全清楚,但可能部分与肌肉内运动神经分支的广泛分布有关。因此,单个刺激电极(如通常使用的那样)可能无法激活供应肌肉的整个运动轴突阵列。因此,本研究的目的是确定使用多个电流源刺激肌肉是否可以提高比单个源可实现的力量更大。
我们比较了使用一个或两个肌内电极在麻醉猴子的前三角肌中可引发的最大等长力量。我们还评估了与通过两个电极进行同步刺激相比,两个电极之间的时间交错刺激是否可能减少长时间活动期间的疲劳。
我们发现双电极刺激始终比单个电极的最大刺激产生更大的力(平均约增加 50%)。然而,在使用交错与同步刺激时,在疲劳反应方面没有发现差异。
考虑使用多电极刺激来增强肌肉的产生力量的能力,从而增加 FES 系统的实用性似乎是合理的。