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A Cost-Effective Inertial Measurement System for Tracking Movement and Triggering Kinesthetic Feedback in Lower-Limb Prosthesis Users

机译:用于跟踪运动和触发下肢假肢用户的经济高效的惯性测量系统

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摘要

Advances in lower-limb prosthetic technologies have facilitated the restoration of ambulation; however, users of such technologies still experience reduced balance control, also due to the absence of proprioceptive feedback. Recent efforts have demonstrated the ability to restore kinesthetic feedback in upper-limb prosthesis applications; however, technical solutions to trigger the required muscle vibration and provide automated feedback have not been explored for lower-limb prostheses. The study’s first objective was therefore to develop a feedback system capable of tracking lower-limb movement and automatically triggering a muscle vibrator to induce the kinesthetic illusion. The second objective was to investigate the developed system’s ability to provide kinesthetic feedback in a case participant. A low-cost, wireless feedback system, incorporating two inertial measurement units to trigger a muscle vibrator, was developed and tested in an individual with limb loss above the knee. Our system had a maximum communication delay of 50 ms and showed good tracking of Gaussian and sinusoidal movement profiles for velocities below 180 degrees per second (error < 8 degrees), mimicking stepping and walking, respectively. We demonstrated in the case participant that the developed feedback system can successfully elicit the kinesthetic illusion. Our work contributes to the integration of sensory feedback in lower-limb prostheses, to increase their use and functionality.
机译:低肢假肢技术的进展促进了恢复的救护;然而,这种技术的用户仍然经历了减少的平衡控制,也是由于没有预言反馈。最近的努力已经证明了在高肢假体应用中恢复动力反馈的能力;然而,触发所需肌肉振动并提供自动反馈的技术方案尚未探讨下肢假体。因此,该研究的第一个目的是开发一种能够跟踪低肢体运动的反馈系统,并自动触发肌肉振动器以诱导动力学错觉。第二个目标是调查发达的系统在案例参与者中提供Kinesthetic反馈的能力。一种低成本,无线反馈系统,包括两个惯性测量单元来引发肌肉振动器,在膝盖上方的肢体损失中开发并测试。我们的系统具有50毫秒的最大通信延迟,并且显示了高斯和正弦运动型材的良好跟踪,用于分别低于180度(误差<8度),分别模仿步进和行走的速度。我们在案例中展示了开发的反馈系统可以成功引发动力学错觉。我们的工作有助于在低肢假肢中融入感官反馈,以提高其使用和功能。

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