Williamson R, Andrews B J
Second Sight, Stanford, California, USA.
Med Biol Eng Comput. 2001 May;39(3):294-302. doi: 10.1007/BF02345283.
Knee joint angle and angular velocity were calculated in real time during standing up and sitting down. Two small modules comprising rate gyroscopes and accelerometers were attached to the thigh and shank of two able-bodied volunteers and one T5 ASIA(A) paraplegic assisted by functional electrical stimulation (FES). The offset and drift of the rate gyroscopes was compensated for by auto-resetting and auto-nulling algorithms. The tilt of the limb segments was calculated by combining the signals of the accelerometer and the rate gyroscope. The joint angle was calculated as the difference in tilt of the segments. The modules were also tested on a two-dimensional model. The mean differences between the rate gyroscope-accelerometer system and the reference goniometer for the model, able-bodied and paraplegic standing trials were 2.1 degrees, 2.4 degrees and 2.3 degrees respectively for knee angle and 2.3 degrees s(-1), 5.0 degrees s(-1) and 11.8 degrees s(-1) respectively for knee velocity. The rate gyroscope-accelerometer system was more accurate than using the accelerometer as a tilt meter, possibly due to the greater bandwidth of the rate gyroscope-accelerometer system.
在起立和坐下过程中实时计算膝关节角度和角速度。两个包含速率陀螺仪和加速度计的小模块分别附着在两名健全志愿者以及一名借助功能性电刺激(FES)辅助的T5 ASIA(A)级截瘫患者的大腿和小腿上。速率陀螺仪的偏移和漂移通过自动重置和自动归零算法进行补偿。肢体节段的倾斜度通过结合加速度计和速率陀螺仪的信号来计算。关节角度计算为节段倾斜度的差值。这些模块也在二维模型上进行了测试。对于模型、健全人和截瘫患者的站立试验,速率陀螺仪 - 加速度计系统与参考测角仪之间膝关节角度的平均差异分别为2.1度、2.4度和2.3度,膝关节速度的平均差异分别为2.3度·秒⁻¹、5.0度·秒⁻¹和11.8度·秒⁻¹。速率陀螺仪 - 加速度计系统比将加速度计用作倾斜仪更准确,这可能是由于速率陀螺仪 - 加速度计系统具有更大的带宽。