Wodarsk Piotr, Jurkojć Jacek, Chmura Marta, Gruszka Grzegorz, Gzik Marek
Department of Biomechatronics, Faculty of Biomedical Engineering, Silesian University of Technology, Gliwice, Poland.
Acta Bioeng Biomech. 2022;24(1):19-28.
The purpose of the study was to determine how a stimulus presented in the virtual reality environment as a simulation of a fall off the stairs, triggers a loss of balance. The study also examined if the head movement measurements and the analysis in the frequency domain could increase the range of interpretation.
11 healthy individuals were tested, two [A1] were identified as more susceptible to the introduced disturbance, and one reported having dizziness, car sickness and fear of heights. Measurements of center of pressure (COP) and head positions were performed in the real and in the virtual environment. The beginning of the simulation was either unexpected or preceded by a signal. The analysis included standard parameters determined in time domain as well as the amplitude of the first harmonic from the fast Fourier transform (FFT).
The analysis did not reveal statistically significant differences between results obtained: in real and virtual environments, with and without the warning signal. It was possible to notice the effect of virtual disturbance in the three selected individuals; this was particularly evident in the analysis of the first harmonic of the FFT.
The conducted tests revealed that the limitation of the analyses exclusively to the time domain could be insufficient for a comprehensive interpretation. The effect of introduced disturbance was particularly noticeable in the analysis of the first harmonic for head movement. The application of this parameter could enable a more accurate investigation of a strategy aimed at maintaining balance.
本研究的目的是确定在虚拟现实环境中呈现的模拟从楼梯上跌落的刺激如何引发平衡丧失。该研究还考察了头部运动测量和频域分析是否能扩大解释范围。
对11名健康个体进行测试,其中两人被确定对引入的干扰更敏感,一人报告有头晕、晕车和恐高症状。在真实环境和虚拟环境中进行压力中心(COP)和头部位置的测量。模拟开始要么是意外的,要么之前有信号提示。分析包括在时域确定的标准参数以及快速傅里叶变换(FFT)的一次谐波幅度。
分析未发现以下情况下获得的结果之间存在统计学显著差异:真实环境和虚拟环境中,有无警告信号。在三名选定个体中可以注意到虚拟干扰的影响;这在FFT一次谐波分析中尤为明显。
进行的测试表明,仅在时域进行分析可能不足以进行全面解释。在头部运动一次谐波分析中,引入干扰的影响尤为明显。应用该参数可以更准确地研究旨在维持平衡的策略。