首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Switching curve control of functional electrical stimulation assisted rowing exercise in paraplegia.
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Switching curve control of functional electrical stimulation assisted rowing exercise in paraplegia.

机译:截瘫功能性电刺激辅助划船运动的切换曲线控制。

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摘要

An indoor rowing machine has been modified for functional electrical stimulation (FES) assisted rowing exercise in paraplegia. To perform the rowing manoeuvre successfully, however, the voluntarily controlled upper body movements must be co-ordinated with the movements of the electrically stimulated paralysed legs. To achieve such co-ordination, an automatic FES controller was developed that employs two levels of hierarchy. At the upper level, a finite state controller identifies the state or phase of the rowing cycle and activates the appropriate lower-level controller, in which electrical stimulation to the paralysed leg muscles is applied with reference to switching curves representing the desired seat velocity as a function of the seat position. In a pilot study, the hierarchical control of FES rowing was shown to be intuitive, reliable and easy to use. Compared with open-loop control of stimulation, all three variants of the closed-loop switching curve controllers used less muscle stimulation per rowing cycle (73% of the open-loop control on average). Further, the closed-loop controller that used switching curves derived from normal rowing kinematics used the lowest muscle stimulation (65% of the open-loop control) and was the most convenient to use for the client.
机译:对室内划船器进行了改良,以在截瘫中辅助功能性电刺激(FES)进行划船运动。然而,为了成功地进行划船动作,必须将自愿控制的上身运动与电刺激的瘫痪腿的运动协调起来。为了实现这种协调,开发了采用两个层次结构的自动FES控制器。在上层,有限状态控制器识别划船周期的状态或阶段,并激活相应的下层控制器,在该控制器中,以代表期望的座椅速度的切换曲线为基础,对瘫痪的腿部肌肉施加电刺激。座位位置的功能。在一项试点研究中,FES划船的分层控制被证明是直观,可靠且易于使用的。与刺激的开环控制相比,闭环切换曲线控制器的所有三个变体在每个划船周期使用的肌肉刺激更少(平均为开环控制的73%)。此外,使用源自正常划船运动学的切换曲线的闭环控制器使用的肌肉刺激最低(占开环控制的65%),并且对于客户而言最方便使用。

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