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Effects of Destabilization of Visual Environment Perception on the Maintenance of Upright Stance by Humans on Different Support Surfaces

机译:视觉环境感知的不稳定对人在不同支撑面上保持直立姿势的影响

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We compared characteristics of the maintenance of human upright stance under conditions of a real visual environment (VE) and "immersion" into a virtual visual environment (VVE). The foreground of the latter corresponded to the window in the room, while the background was a view of the aqueduct with the adjacent terrain. Destabilization of the VVE was created by "coupling" of the foreground position with oscillations of the subject's body within the sagittal plane. We measured elementary variables calculated according to the trajectory of the center of feet pressure (CFP); these variables were: (i) displacement of the vertical projection of the center of gravity (CGv) and (ii) difference between the positions of the CFP and CGv (variables CGv and CFP - CGv). When standing on a rigid support surface, the root mean square (RMS) of the spectra of oscillations of both variables decreased in the case of an antiphase relation between displacements of the VE foreground with oscillations of the body and increased in the case of an inphase relation between these variables, as compared with the RMS in the maintenance of upright stance under conditions of an immobile VE (ImVE). Under conditions of the inphase relation, however, there were no dramatic disorders in the vertical stance; maximum oscillations of the body in this case did not exceed values typical of the upright stance with the eyes closed (EC). When the upright stance was maintained on a squeezable support, body oscillations increased significantly under all visual conditions, and the difference between the RMS of the CGv spectra obtained for the conditions of the inphase relation and EC became statistically significant. In the case of standing on a squeezable support, RMSs of the CFP - CGv variable at the antiphase relation of the VVE foreground were greater than those at the inphase relation. At the same time, the RMS of the CGv spectra were, vice versa, greater at the inphase relation. Thus, upon variation of the conditions for the vertical stance maintenance, the amplitude characteristics of elementary variables (CGv and CFP - CGv) determining the CFP on a support can vary in both a parallel and an independent manner. These variables can be controlled not only by coupled but also by independent (uncoupled) mechanisms controlling their amplitude/frequency parameters.
机译:我们比较了在真实视觉环境(VE)和“沉浸”到虚拟视觉环境(VVE)条件下维持人体直立姿势的特征。后者的前景与房间中的窗户相对应,而背景则是与邻近地形有关的渡槽景观。 VVE的不稳定是通过将​​前景位置与矢状面内受试者的身体振动“耦合”而产生的。我们测量了根据脚底压力(CFP)轨迹计算的基本变量;这些变量是:(i)重心的垂直投影(CGv)的位移,以及(ii)CFP和CGv位置之间的差异(变量CGv和CFP-CGv)。当站在刚性支撑表面上时,两个变量的振动频谱的均方根(RMS)在VE前景位移与人体振动之间呈反相位关系时减小,而在同相情况下则增大在固定VE(ImVE)的情况下,与保持直立姿势的RMS相比,这些变量之间的关系。但是,在同相关系的条件下,垂直姿势没有明显的紊乱。在这种情况下,身体的最大振动不超过闭眼(EC)时直立姿势的典型值。当将直立的姿势保持在可挤压的支撑物上时,在所有视觉条件下,人体振动都显着增加,并且针对同相关系的条件所获得的CGv光谱的RMS与EC之间的差异变得具有统计学意义。在处于可压缩支撑的情况下,VFP前景的反相关系下CFP-CGv变量的RMS大于同相关系下的RMS。同时,在同相关系下,CGv谱的RMS反之亦然。因此,在改变用于竖立姿势​​的条件时,确定支撑件上的CFP的基本变量(CGv和CFP-CGv)的振幅特性可以并行和独立地变化。这些变量不仅可以通过耦合来控制,而且可以通过控制其幅度/频率参数的独立(非耦合)机制来控制。

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