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A combination of inertial sensors and vibrotactile feedback for balance improvements in therapeutic applications

机译:惯性传感器和振动反馈的组合,用于治疗应用的平衡改进

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Biofeedback systems are being widely used on patients with balance disorders due to vestibular loss, stroke or aging. Undergoing continuous balance training regimens with the aid of biofeedback systems have proven to be able to effectively augment postural stability. A variety of feedback modalities are available ranging from audio signaling, visual indications, tactile cueing, etc, and their suitability relates to the nature of the application. This paper presents the development of a real time vibrotactile biofeedback system for medial-lateral trunk tilt. The prototype employs a wireless inertial sensor for trunk tilt angle measurements, a comprehensive software interface for data acquisition, data processing and display, video recording, feedback signal generation and data analysis, and wearable vibrotactile actuators to provide biofeedback based on trunk tilt measurements. Feedback is provided based on a threshold angle range entered via the interface. To test the applicability of the system, a commonly used balance training protocol was identified, standing in tandem Romberg Position with eyes open and eyes closed. Two young, healthy subjects participated in the experiment with and without the biofeedback system, and the effectiveness of biofeedback was analyzed. The results proved the developed system's capability in providing real time biofeedback for balance improvements.
机译:由于前庭损失,中风或老化,生物反馈系统被广泛用于平衡障碍的患者。经过借助于生物反馈系统,经过借助的持续平衡培训方案已被证明能够有效地增强姿势稳定性。可以从音频信号,视觉指示,触觉提示等提供各种反馈方式,并且它们的适用性与应用的性质有关。本文介绍了内侧横向树干倾斜的实时振动触觉生物反馈系统的开发。原型采用无线惯性传感器,用于中继倾斜角度测量,用于数据采集,数据处理和显示,视频记录,反馈信号产生和数据分析以及可穿戴振动触控致动器的综合软件接口,以基于行李箱倾斜测量提供生物反馈。基于通过接口输入的阈值角度范围提供反馈。为了测试系统的适用性,确定了一个常用的平衡训练协议,站在Tandem Romberg位置,眼睛睁开眼睛。两名年轻,健康受试者参加了在实验和没有生物融合系统的实验中,分析了生物反馈的有效性。结果证明了发达的系统在提供实时生物融合以进行平衡改进的能力。

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