Downey Ryan J, Cheng Teng-Hu, Bellman Matthew J, Dixon Warren E
IEEE Trans Neural Syst Rehabil Eng. 2015 Nov;23(6):1117-27. doi: 10.1109/TNSRE.2015.2427658. Epub 2015 Apr 29.
Neuromuscular electrical stimulation (NMES) is commonly used in rehabilitative settings and is also used for assistive purposes to create functional movements, where it is termed functional electrical stimulation (FES). One limitation of NMES/FES is early onset of muscle fatigue. NMES-induced fatigue can be reduced by switching between multiple stimulation channels that target different motor units or synergistic muscles (i.e., asynchronous stimulation). However, switching stimulation channels introduces additional complexity due to the need to consider the switching dynamics and differing muscle response to stimulation. The objective of this study was to develop and test a closed-loop controller for asynchronous stimulation. The developed closed-loop controller yields asymptotic tracking of a desired trajectory for a person's knee-shank complex despite switching between stimulation channels. The developed controller was implemented on four able-bodied individuals with four-channel asynchronous stimulation as well as single-channel conventional stimulation. The results indicate that asynchronous stimulation extends the duration that functional movements can be performed during feedback control. This result is promising for the implementation of asynchronous stimulation in closed-loop rehabilitative procedures and in assistive devices as a method to reduce muscle fatigue while maintaining a person's ability to track a desired limb trajectory.
神经肌肉电刺激(NMES)常用于康复环境,也用于辅助目的以产生功能性运动,在这种情况下它被称为功能性电刺激(FES)。NMES/FES的一个局限性是肌肉疲劳出现较早。通过在针对不同运动单位或协同肌肉的多个刺激通道之间切换(即异步刺激),可以减少NMES引起的疲劳。然而,由于需要考虑切换动态以及肌肉对刺激的不同反应,切换刺激通道会引入额外的复杂性。本研究的目的是开发并测试一种用于异步刺激的闭环控制器。所开发的闭环控制器能够在刺激通道之间切换的情况下,对人的膝-小腿复合体的期望轨迹进行渐近跟踪。所开发的控制器在四名身体健全的个体上进行了实施,采用了四通道异步刺激以及单通道传统刺激。结果表明,异步刺激延长了在反馈控制期间可以执行功能性运动的持续时间。这一结果对于在闭环康复程序和辅助设备中实施异步刺激作为一种减少肌肉疲劳同时保持人跟踪期望肢体轨迹能力的方法很有前景。