Intelligent vibrotactile biofeedback system for real-time postural correction on perturbed surfaces

A. Gopalai, S. M. N. Arosha Senanayake, K. Lim
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引用次数: 2

Abstract

Biofeedbacks delivery during rehabilitation have been known to improve postural control and shorten rehabilitation periods. A biofeedback system communicates with the human central nervous system (CNS) through a variety of feedback modalities. Among the many available modalities vibrotactile feedback devices are gaining much attention. This is due to their desirable characteristics and simplistic manner of presenting information to the CNS. An intelligent biofeedback system integrated with wireless sensors for monitoring postural control during rehabilitation was hypothesized to shorten rehabilitation periods. This work presents the design of a postural control measuring device integrated with real-time intelligent biofeedback for postural correction. The system integrates three modules: (a) inertial measurement units (IMUs), (b) fuzzy knowledge base, and (c) feedback driver circuit. Human posture is measured using Euler angular measurements from the IMUs. A fuzzy inference system (FIS) was used to determine quality of postural control, based on measurements from the IMUs. Forewarning of poor postural control is given by vibrotactile actuators (biofeedback). Experiments were conducted to test viability of the system in achieving accurate real-time measurements and interventions. The results observed improvements in postural control when biofeedback intervention was present.
智能振动触觉生物反馈系统,用于扰动表面的实时姿态校正
已知在康复过程中给予生物反馈可以改善姿势控制并缩短康复期。生物反馈系统通过多种反馈方式与人类中枢神经系统(CNS)进行交流。在许多可用的模式中,振动触觉反馈装置正受到越来越多的关注。这是由于它们的理想特性和向中枢神经系统提供信息的简单方式。假设一种集成无线传感器的智能生物反馈系统用于监测康复期间的姿势控制,以缩短康复周期。本文设计了一种结合实时智能生物反馈的姿势控制测量装置,用于姿势矫正。该系统集成了三个模块:(a)惯性测量单元(imu), (b)模糊知识库,(c)反馈驱动电路。人体姿势测量使用欧拉角测量从imu。基于imu的测量结果,采用模糊推理系统(FIS)来确定姿态控制的质量。振动触觉促动器(生物反馈)对姿势控制不良进行预警。进行了实验,以测试该系统在实现精确的实时测量和干预方面的可行性。结果发现,当生物反馈干预存在时,姿势控制有所改善。
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