Fesia Technology, Donostia-San Sebastián, Spain.
Department of Physiology, University of the Basque Country (UPV/EHU), Leioa, Spain.
Artif Organs. 2022 Oct;46(10):2027-2033. doi: 10.1111/aor.14346. Epub 2022 Jun 29.
The most common chronic sequela after stroke is the loss of arm function, and functional electrical stimulation (FES) applied to the forearm muscles is one of the options to treat it. Surface multi-field electrodes have emerged, showing a great potential to improve the selectivity of the stimulation, delay muscle fatigue, and provide easier donning and doffing. The muscular selectivity takes on special relevance in the rehabilitation of the upper extremity as hand dexterity requires a wide diversity of specific muscle actions.
This pilot study analyses the movements generated in the wrist and fingers using a commercial multi-field technology-based FES device (Fesia Grasp). The study included five patients with hemiplegic subacute stroke, in which scanning of all cathodes of the electrode was carried out daily for 5 days, in two different forearm positions, with the resulting movements being labeled by experienced therapists.
The aim of this pilot study was to determine if there were differences between subjects and between forearm positions in terms of produced movements. Movements of the wrist (two movements) and the fingers (six movements) could be achieved in two different forearm positions.
The multi-field electrode of Fesia Grasp enables to generate a wide range of movements of the hand in different positions. This fact could allow to produce more physiological movement patterns during the rehabilitation process with FES, which could have a beneficial effect on the recovery of patients with neurological diseases.
中风后最常见的慢性后遗症是手臂功能丧失,而应用于前臂肌肉的功能性电刺激(FES)是治疗手臂功能丧失的方法之一。表面多场电极已经出现,显示出改善刺激选择性、延迟肌肉疲劳以及提供更轻松的穿戴和脱下的巨大潜力。肌肉选择性在上肢康复中具有特殊意义,因为手的灵巧性需要广泛的特定肌肉动作。
本初步研究使用基于商业多场技术的 FES 设备(Fesia Grasp)分析手腕和手指产生的运动。该研究包括 5 名患有偏瘫亚急性中风的患者,每天对电极的所有阴极进行扫描,持续 5 天,在两种不同的前臂位置进行,由有经验的治疗师对产生的运动进行标记。
本初步研究的目的是确定在不同的个体和前臂位置之间,产生的运动是否存在差异。手腕(两个运动)和手指(六个运动)的运动可以在两种不同的前臂位置产生。
Fesia Grasp 的多场电极可以在不同位置产生广泛的手部运动。这一事实可能允许在 FES 的康复过程中产生更符合生理的运动模式,这对神经疾病患者的康复可能有有益的影响。