Luinge H J, Veltink P H, Baten C T M
Xsens Technologies b.v., Enschede, The Netherlands.
J Biomech. 2007;40(1):78-85. doi: 10.1016/j.jbiomech.2005.11.011. Epub 2006 Feb 7.
In order to evaluate the impact of neuromuscular disorders affecting the upper extremities, the functional use of the arm need to be evaluated during daily activities. A system suitable for measuring arm kinematics should be ambulatory and not interfere with activities of daily living. A measurement system based on miniature accelerometers and gyroscopes is adequate because the sensors are small and do not suffer from line of sight problems. A disadvantage of such sensors is the cumulative drift around the vertical and the problems with aligning the sensor with the segment. A method that uses constraints in the elbow to measure the orientation of the lower arm with respect to the upper arm is described. This requires a calibration method to determine the exact orientation of each of the sensors with respect to the segment. Some preliminary measurements were analyzed and they indicated a strong reduction in orientation error around the vertical. It seemed that the accuracy of the method is limited by the accuracy of the sensor to segment calibration.
为了评估影响上肢的神经肌肉疾病的影响,需要在日常活动中评估手臂的功能使用情况。一个适合测量手臂运动学的系统应该是可移动的,并且不会干扰日常生活活动。基于微型加速度计和陀螺仪的测量系统是足够的,因为传感器体积小,不存在视线问题。此类传感器的一个缺点是在垂直方向上的累积漂移以及将传感器与节段对齐的问题。本文描述了一种利用肘部约束来测量下臂相对于上臂方向的方法。这需要一种校准方法来确定每个传感器相对于节段的精确方向。对一些初步测量结果进行了分析,结果表明垂直方向上的方向误差大幅降低。该方法的准确性似乎受到传感器到节段校准准确性的限制。