University of Twente, Biomedical Signals and Systems, Drienerlolaan 5, 7500AE Enschede, Netherlands; MIRA Institute of Biomedical Technology and Technical Medicine, University of Twente, P.O. Box 217, 7500AE Enschede, Netherlands.
Gait Posture. 2014;39(1):391-6. doi: 10.1016/j.gaitpost.2013.08.008. Epub 2013 Aug 19.
In this study we determined if detection of the onset of gait initiation in transfemoral amputees can be useful for voluntary control of upper leg prostheses. From six transfemoral amputees inertial sensor data and EMG were measured at the prosthetic leg during gait initiation. First, initial movement was detected from the inertial sensor data. Subsequently it was determined whether EMG could predict initial movement before detection based on the inertial sensors with comparable consistency as the inertial sensors. From the inertial sensors the initial movement can be determined. If the prosthetic leg leads, the upper leg accelerometer data was able to detect initial movement best. If the intact leg leads the upper leg gyroscope data performed best. Inertial sensors at the upper leg in general showed detections at the same time or earlier than those at the lower leg. EMG can predict initial movement up to a 138 ms in advance, when the prosthetic leg leads. One subject showed consistent EMG onset up to 248 ms before initial movement in the intact leg leading condition. A new method to detect initial movement from inertial sensors was presented and can be useful for additional prosthetic control. EMG measured at the prosthetic leg can be used for prediction of gait initiation when the prosthetic leg is leading, but for the intact leg leading condition this will not be of additional value.
在这项研究中,我们确定了在接受股骨截肢的患者中检测起始步态的出现是否可以用于对大腿假肢的自愿控制。我们在患者开始行走时,从六名接受股骨截肢的患者的惯性传感器数据和肌电图中测量了假肢腿的数据。首先,我们从惯性传感器数据中检测到初始运动。随后,我们确定肌电图是否可以在基于惯性传感器的检测之前,以与惯性传感器相当的一致性来预测初始运动。我们可以从惯性传感器中确定初始运动。如果假肢腿领先,那么大腿加速度计数据就能最好地检测到初始运动。如果是健全的腿领先,那么大腿陀螺仪数据表现最佳。通常情况下,与小腿相比,大腿上的惯性传感器的检测结果会同时或更早出现。当假肢腿领先时,肌电图可以提前 138 毫秒预测初始运动。一位受试者在健全腿领先的情况下,其肌电图的起始时间比初始运动提前了 248 毫秒。我们提出了一种从惯性传感器检测初始运动的新方法,它可能对额外的假肢控制有用。当假肢腿领先时,测量假肢腿上的肌电图可用于预测步态起始,但对于健全腿领先的情况,这将没有额外的价值。