Lauer Richard T, Smith Brian T, Betz Randal R
Research Department, Shriners Hospitals for Children, 3551 North Broad Street, Philadelphia, PA 19140, USA.
IEEE Trans Biomed Eng. 2005 Sep;52(9):1532-40. doi: 10.1109/TBME.2005.851527.
An adaptive neuro-fuzzy inference system (ANFIS) with a supervisory control system (SCS) was used to predict the occurrence of gait events using the electromyographic (EMG) activity of lower extremity muscles in the child with cerebral palsy (CP). This is anticipated to form the basis of a control algorithm for the application of electrical stimulation (ES) to leg or ankle muscles in an attempt to improve walking ability. Either surface or percutaneous intramuscular electrodes were used to record the muscle activity from the quadriceps muscles, with concurrent recording of the gait cycle performed using a VICON motion analysis system for validation of the ANFIS with SCS. Using one EMG signal and its derivative from each leg as its inputs, the ANFIS with SCS was able to predict all gait events in seven out of the eight children, with an average absolute time differential between the VICON recording and the ANFIS prediction of less than 30 ms. Overall accuracy in predicting gait events ranged from 98.6% to 95.3% (root mean-squared error between 0.7 and 1.5). Application of the ANFIS with the SCS to the prediction of gait events using EMG data collected two months after the initial data demonstrated comparable results, with no significant differences between gait event detection times. The accuracy rate and robustness of the ANFIS with SCS with two EMG signals suggests its applicability to ES control.
采用带有监督控制系统(SCS)的自适应神经模糊推理系统(ANFIS),利用脑性瘫痪(CP)患儿下肢肌肉的肌电图(EMG)活动来预测步态事件的发生。预计这将为应用电刺激(ES)于腿部或踝部肌肉以改善行走能力的控制算法奠定基础。使用表面电极或经皮肌内电极记录股四头肌的肌肉活动,同时使用VICON运动分析系统记录步态周期,以验证带有SCS的ANFIS。以每条腿的一个EMG信号及其导数作为输入,带有SCS的ANFIS能够在8名儿童中的7名中预测所有步态事件,VICON记录与ANFIS预测之间的平均绝对时间差小于30毫秒。预测步态事件的总体准确率在98.6%至95.3%之间(均方根误差在0.7至1.5之间)。将带有SCS的ANFIS应用于使用初始数据两个月后收集的EMG数据预测步态事件,结果相当,步态事件检测时间之间无显著差异。带有SCS且有两个EMG信号的ANFIS的准确率和稳健性表明其适用于ES控制。