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通过无线音频生物反馈系统增强身体站立平衡恢复能力的研究

Towards the enhancement of body standing balance recovery by means of a wireless audio-biofeedback system.

作者信息

Costantini Giovanni, Casali Daniele, Paolizzo Fabio, Alessandrini Marco, Micarelli Alessandro, Viziano Andrea, Saggio Giovanni

机构信息

Department of Electronic Engineering, University of Rome "Tor Vergata", Via del Politecnico 1, 00133 Rome, Italy.

Department of Electronic Engineering, University of Rome "Tor Vergata", Via del Politecnico 1, 00133 Rome, Italy; Department of Cognitive Sciences, University of California, Irvine 3151 Social Sciences Plaza, Irvine, CA 92697,USA.

出版信息

Med Eng Phys. 2018 Apr;54:74-81. doi: 10.1016/j.medengphy.2018.01.008. Epub 2018 Feb 10.

Abstract

Human maintain their body balance by sensorimotor controls mainly based on information gathered from vision, proprioception and vestibular systems. When there is a lack of information, caused by pathologies, diseases or aging, the subject may fall. In this context, we developed a system to augment information gathering, providing the subject with warning audio-feedback signals related to his/her equilibrium. The system comprises an inertial measurement unit (IMU), a data processing unit, a headphone audio device and a software application. The IMU is a low-weight, small-size wireless instrument that, body-back located between the L2 and L5 lumbar vertebrae, measures the subject's trunk kinematics. The application drives the data processing unit to feeding the headphone with electric signals related to the kinematic measures. Consequently, the user is audio-alerted, via headphone, of his/her own equilibrium, hearing a pleasant sound when in a stable equilibrium, or an increasing bothering sound when in an increasing unstable condition. Tests were conducted on a group of six older subjects (59y-61y, SD = 2.09y) and a group of four young subjects (21y-26y, SD = 2.88y) to underline difference in effectiveness of the system, if any, related to the age of the users. For each subject, standing balance tests were performed in normal or altered conditions, such as, open or closed eyes, and on a solid or foam surface. The system was evaluated in terms of usability, reliability, and effectiveness in improving the subject's balance in all conditions. As a result, the system successfully helped the subjects in reducing the body swaying within 10.65%-65.90%, differences depending on subjects' age and test conditions.

摘要

人类主要通过基于视觉、本体感觉和前庭系统收集的信息的感觉运动控制来维持身体平衡。当由于病理、疾病或衰老导致信息不足时,个体可能会跌倒。在此背景下,我们开发了一种增强信息收集的系统,为个体提供与其平衡相关的警告音频反馈信号。该系统包括一个惯性测量单元(IMU)、一个数据处理单元、一个头戴式音频设备和一个软件应用程序。IMU是一种重量轻、体积小的无线仪器,位于身体背部L2和L5腰椎之间,用于测量个体的躯干运动学。该应用程序驱动数据处理单元向头戴式耳机提供与运动学测量相关的电信号。因此,用户通过头戴式耳机收到关于其自身平衡的音频警报,在稳定平衡时听到悦耳的声音,而在不稳定状态增加时听到越来越烦人的声音。对一组六名老年受试者(59岁 - 61岁,标准差 = 2.09岁)和一组四名年轻受试者(21岁 - 26岁,标准差 = 2.88岁)进行了测试,以强调该系统在有效性方面(如果有的话)与用户年龄的差异。对于每个受试者,在正常或改变的条件下进行站立平衡测试,例如,睁眼或闭眼,以及在坚实或泡沫表面上。从可用性、可靠性以及在所有条件下改善受试者平衡的有效性方面对该系统进行了评估。结果,该系统成功帮助受试者将身体摇摆减少了10.65% - 65.90%,差异取决于受试者的年龄和测试条件。

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