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Command control for functional electrical stimulation hand grasp systems using miniature accelerometers and gyroscopes

机译:使用微型加速度计和陀螺仪的功能性电刺激手持系统的命令控制

摘要

Recent commercially available miniature sensors have the potential to improve the functions of functional electrical stimulation (FES) systems in terms of control, reliability and robustness. A new control approach using a miniature gyroscope and an accelerometer was studied. These sensors were used to detect the linear acceleration and angular velocity of residual voluntary movements on upper limbs and were small and easy to put on. Five healthy subjects and three cervical spinal cord injured subjects were recruited to evaluate this controller. Sensors were placed on four locations: the shoulder upper arm, wrist and hand. A quick forward-and-backward movement was employed to produce a distinctive waveform that was different from general movements. A detection algorithm was developed to generate a command signal by identifying this distinctive waveform through the detection of peaks and valleys in the sensor's signals. This command signal was used to control different FES hand grasp patterns. With a specificity of 0.9, the sensors had a success rate of 85-100% on healthy subjects and 82-97% on spinal cord injured subjects. In terms of sensor placement, the gyroscope was better as a control source than the accelerometer for wrist and hand positions, but the reverse was true for the shoulder.
机译:最近的市售微型传感器具有在控制,可靠性和鲁棒性方面改善功能性电刺激(FES)系统的功能的潜力。研究了一种使用微型陀螺仪和加速度计的新控制方法。这些传感器用于检测上肢残余自愿运动的线性加速度和角速度,并且体积小且易于佩戴。招募了五名健康受试者和三名颈脊髓损伤受试者以评估该控制者。传感器放置在四个位置:肩膀上臂,手腕和手。快速向前和向后运动被用来产生不同于一般运动的独特波形。开发了一种检测算法,通过检测传感器信号中的峰值和谷值来识别此独特的波形,从而生成命令信号。该命令信号用于控制不同的FES手持模式。传感器的特异性为0.9,在健康受试者上的成功率为85-100%,在脊髓损伤受试者上的成功率为82-97%。就传感器的位置而言,陀螺仪作为控制源比手腕和手部位置的加速度计要好,但对肩膀而言则相反。

著录项

  • 作者

    Tong KY; Mak AFT; Ip WY;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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