Tecnalia Serbia Ltd., Belgrade, Serbia.
J Neuroeng Rehabil. 2012 Sep 25;9:66. doi: 10.1186/1743-0003-9-66.
Functional electrical stimulation (FES) applied via transcutaneous electrodes is a common rehabilitation technique for assisting grasp in patients with central nervous system lesions. To improve the stimulation effectiveness of conventional FES, we introduce multi-pad electrodes and a new stimulation paradigm.
The new FES system comprises an electrode composed of small pads that can be activated individually. This electrode allows the targeting of motoneurons that activate synergistic muscles and produce a functional movement. The new stimulation paradigm allows asynchronous activation of motoneurons and provides controlled spatial distribution of the electrical charge that is delivered to the motoneurons. We developed an automated technique for the determination of the preferred electrode based on a cost function that considers the required movement of the fingers and the stabilization of the wrist joint. The data used within the cost function come from a sensorized garment that is easy to implement and does not require calibration. The design of the system also includes the possibility for fine-tuning and adaptation with a manually controllable interface.
The device was tested on three stroke patients. The results show that the multi-pad electrodes provide the desired level of selectivity and can be used for generating a functional grasp. The results also show that the procedure, when performed on a specific user, results in the preferred electrode configuration characteristics for that patient. The findings from this study are of importance for the application of transcutaneous stimulation in the clinical and home environments.
经皮电极的功能性电刺激(FES)是一种常见的康复技术,用于辅助中枢神经系统损伤患者抓握。为了提高传统 FES 的刺激效果,我们引入了多电极片和一种新的刺激模式。
新的 FES 系统由一个由可单独激活的小电极片组成的电极组成。该电极可靶向激活协同肌的运动神经元,产生功能性运动。新的刺激模式允许运动神经元异步激活,并提供对递送到运动神经元的电荷的受控空间分布。我们开发了一种基于考虑手指所需运动和腕关节稳定的成本函数来确定最佳电极的自动化技术。成本函数中使用的数据来自易于实现且无需校准的传感器服装。系统设计还包括使用手动控制接口进行微调的可能性。
该设备在 3 名中风患者中进行了测试。结果表明,多电极片提供了所需的选择性水平,可用于产生功能性抓握。结果还表明,对于特定用户执行该程序会导致该患者的最佳电极配置特征。这项研究的结果对于经皮刺激在临床和家庭环境中的应用具有重要意义。