Development of IMU-based angle measurement system for finger rehabilitation

Hsien-Ting Chang, Li-Wei Cheng, J. Chang
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引用次数: 11

Abstract

With rapid growing of medical demands, especially rehabilitation, for aging society and disabled population, devices such as prosthetics and exoskeletons are required not only to over assistant but to provide more detailed bioinformatics to help patients regain mobility and ability. Traditionally, measurement of posture of human body such as finger motions, is not simple and not compact. As such, the aim of this paper is devoted to development and validation of math model and algorithm to process data collected by multi-axis inertial measurement unit (IMU) for measuring human finger posture. It is showed that with the proposed method, accumulated error can be greatly reduced which exclude recursive calibrations and sensor fusion of IMU systems for real-time rehabilitation.
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基于imu的手指康复角度测量系统的研制
随着老龄化社会和残疾人群的医疗需求,特别是康复需求的快速增长,假肢和外骨骼等设备不仅需要辅助,而且需要提供更详细的生物信息,以帮助患者恢复行动和能力。传统的人体姿势测量,如手指运动,不简单,不紧凑。因此,本文致力于开发和验证多轴惯性测量单元(IMU)采集的人体手指姿态数据处理的数学模型和算法。结果表明,该方法可以有效地降低IMU系统的累积误差,避免了IMU系统的递归校准和传感器融合。
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