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用于上肢本体感觉编码的可穿戴多通道触觉设备。

Wearable multichannel haptic device for encoding proprioception in the upper limb.

机构信息

Department of Bioengineering, Imperial College London, London, United Kingdom.

Division of Signal Processing and Biomedical Engineering, Department of Electrical Engineering, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

J Neural Eng. 2020 Oct 15;17(5):056035. doi: 10.1088/1741-2552/aba6da.

Abstract

OBJECTIVE

We present the design, implementation, and evaluation of a wearable multichannel haptic system. The device is a wireless closed-loop armband driven by surface electromyography (EMG) and provides sensory feedback encoding proprioception. The study is motivated by restoring proprioception information in upper limb prostheses.

APPROACH

The armband comprises eight vibrotactile actuators that generate distributed patterns of mechanical waves around the limb to stimulate perception and to transfer proportional information on the arm motion. An experimental study was conducted to assess: the sensory threshold in eight locations around the forearm, the user adaptation to the sensation provided by the device, the user performance in discriminating multiple stimulation levels, and the device performance in coding proprioception using four spatial patterns of stimulation. Eight able-bodied individuals performed reaching tasks by controlling a cursor with an EMG interface in a virtual environment. Vibrotactile patterns were tested with and without visual information on the cursor position with the addition of a random rotation of the reference control system to disturb the natural control and proprioception.

MAIN RESULTS

The sensation threshold depended on the actuator position and increased over time. The maximum resolution for stimuli discrimination was four. Using this resolution, four patterns of vibrotactile activation with different spatial and magnitude properties were generated to evaluate their performance in enhancing proprioception. The optimal vibration pattern varied among the participants. When the feedback was used in closed-loop control with the EMG interface, the task success rate, completion time, execution efficiency, and average target-cursor distance improved for the optimal stimulation pattern compared to the condition without visual or haptic information on the cursor position.

SIGNIFICANCE

The results indicate that the vibrotactile device enhanced the participants' perceptual ability, suggesting that the proposed closed-loop system has the potential to code proprioception and enhance user performance in the presence of perceptual perturbation.

摘要

目的

我们提出了一种可穿戴多通道触觉系统的设计、实现和评估。该设备是一种由表面肌电图(EMG)驱动的无线闭环臂带,提供本体感受编码的感觉反馈。该研究旨在恢复上肢假肢中的本体感受信息。

方法

臂带包括八个振动触觉传感器,可在肢体周围产生分布式机械波模式,以刺激感知并传递关于手臂运动的比例信息。进行了一项实验研究,以评估:前臂周围八个位置的感觉阈值、用户对设备提供的感觉的适应能力、用户在区分多个刺激水平方面的表现,以及设备使用四种刺激空间模式对本体感受进行编码的性能。八名健全人通过使用 EMG 接口在虚拟环境中控制光标来执行伸展任务。在不提供光标位置的视觉信息的情况下测试振动模式,并在参考控制系统随机旋转以干扰自然控制和本体感受的情况下添加随机旋转。

主要结果

感觉阈值取决于致动器的位置,并随时间增加而增加。刺激辨别力的最大分辨率为四。使用此分辨率,生成了具有不同空间和幅度特性的四种振动触觉激活模式,以评估它们增强本体感受的性能。最佳振动模式因参与者而异。当使用 EMG 接口进行闭环控制并反馈时,与没有光标位置的视觉或触觉信息的情况相比,对于最佳刺激模式,任务成功率、完成时间、执行效率和平均目标光标距离都有所提高。

意义

结果表明,振动触觉设备增强了参与者的感知能力,这表明所提出的闭环系统具有编码本体感受并在存在感知干扰的情况下提高用户性能的潜力。

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