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小波分解在分析虚拟现实头戴式显示系统对姿势稳定性影响中的应用。

Wavelet Decomposition in Analysis of Impact of Virtual Reality Head Mounted Display Systems on Postural Stability.

机构信息

Department of Biomechatronics, Faculty of Biomedical Engineering, Silesian University of Technology, 41-800 Zabrze, Poland.

出版信息

Sensors (Basel). 2020 Dec 12;20(24):7138. doi: 10.3390/s20247138.

Abstract

This study investigated how spatial projection systems influences body balance including postural stability. Analyzing precisely defined frequency bands of movements of the center of pressure makes it possible to determine the effectiveness of the balance system's response to disruptions and disorders and may be used as an indicator in the diagnosis of motor dysfunction. The study involved 28 participants for whom the center of pressure was assessed in a test with open eyes, closed eyes and with virtual reality projection. Percent distributions of energy during wavelet decomposition were calculated. Changes in body stability were determined for the virtual reality tests and these changes were classified as an intermediate value between the open-eyes test and the closed-eyes test. The results indicate the importance of using safety support systems in therapies involving Virtual Reality. The results also show the necessity of measurements times in stabilographic evaluations in order to conduct a more thorough analysis of very low frequencies of the center of pressure signal.

摘要

本研究调查了空间投射系统如何影响包括姿势稳定性在内的身体平衡。分析精确定义的压力中心运动的频带使得确定平衡系统对干扰和障碍的反应的有效性成为可能,并可用作诊断运动功能障碍的指标。该研究涉及 28 名参与者,他们的压力中心在睁眼、闭眼和虚拟现实投影测试中进行了评估。计算了在小波分解期间的能量的百分比分布。确定了虚拟现实测试中身体稳定性的变化,这些变化被分类为睁眼测试和闭眼测试之间的中间值。结果表明在涉及虚拟现实的治疗中使用安全支持系统的重要性。结果还表明在稳定图评估中需要测量时间,以便更彻底地分析压力中心信号的非常低频率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa3f/7764736/a991eb497181/sensors-20-07138-g001.jpg

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