Chen Shih-Wei, Chen Shih-Ching, Chen Chiun-Fan, Lai Jin-Shin, Kuo Te-Son
Department of Electrical Engineering, National Taiwan University, Taipei, Taiwan. r92921115@ ntu.edu.tw
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:666-9. doi: 10.1109/IEMBS.2009.5333671.
Foot switches operating with force sensitive resistors placed in the shoe sole were considered as an effective way for driving FES assisted walking systems in gait restoration. However, the reliability and durability of the foot switches run down after a certain number of steps. As an alternative for foot switches, a simple, portable, and easy to handle motion driven electrical stimulator (ES) is provided for drop foot treatment. The device is equipped with a single tri-axis accelerometer worn on the pelvis, a commercial dual channel electrical stimulator, and a controller unit. By monitoring the pelvic rotation and acceleration during a walking cycle, the events including heel strike and toe off of each step is thereby predicted by a post-processing neural network model.
将置于鞋底的力敏电阻器用于操作的脚踏开关,被认为是在步态恢复中驱动功能性电刺激(FES)辅助步行系统的有效方式。然而,经过一定步数后,脚踏开关的可靠性和耐用性会降低。作为脚踏开关的替代方案,提供了一种用于治疗足下垂的简单、便携且易于操作的运动驱动电刺激器(ES)。该设备配备了一个佩戴在骨盆上的单轴三轴加速度计、一个商用双通道电刺激器和一个控制单元。通过监测步行周期中的骨盆旋转和加速度,每个步幅的足跟触地和足趾离地等事件可通过后处理神经网络模型进行预测。