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Maintenance of upright stance in humans in normal and virtual visual environments

机译:在正常和虚拟视觉环境中维持人类的直立姿势

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摘要

We recorded in 16 healthy subjects the sagittal and frontal components of the stabilogram when standing on a rigid motionless or movable (oscillating) platform under four conditions of visual control: (i) open eyes, OE; (ii) closed eyes, CE; (iii) central vision, CV, and (iv) virtual visual environment, VVE. Under the latter condition, subjects observed the 3D image of a room, which was generated by the computer; the image was adhered to head movements in such a manner that a peculiar connection for normal visual conditions between movements of the head and displacements of the visible visual environment was reproduced. Through a low-pass filtration of a trajectory of the center of pressure of feet (CPF), two elementary variables were received, horizontal motions of the center of gravity (CG) and the difference between the CPF and the CG (CPF-CG). Changes in these variables (CG and CPF-CG) were estimated using spectral analysis and subsequent calculation of the median frequency (MF) and root mean square value (RMS) of the spectra. The MFs of the spectra of the investigated variables were approximately identical under conditions of standing on oscillating and motionless supports and showed no clear dependence on various visual conditions. Unlike MFs, the RMSs of the spectra of body sways appeared more dependent on changes of conditions of standing and the mode of visual control (differing from each other in the higher sensitivity to modifications of conditions of standing and visual control). With standing on the motionless support, the RMSs of the spectra of both variables were the greatest under VVE and CE conditions and the smallest under OE condition. The body oscillations were considerably amplified under conditions of standing on a movable support, and a different pattern of visual influences on the RMS of both investigated variables was revealed. The RMSs had the greatest value under CE condition and were much smaller (50–40%) under other visual conditions, including the VVE condition. Therefore, our findings show that, under VVE conditions, visual sensory afferentation is ignored by cerebral structures controlling postural adjustments if standing occurs on a motionless support but is effectively used at the maintenance of upright stance on an oscillating support.
机译:我们在16种健康受试者中记录了在四种视觉控制条件下,站在刚性的静止或可移动(振荡)平台上时稳定图像的矢状和额状分量的情况:(i)睁开眼睛,OE; (ii)CE闭眼; (iii)中央视觉CV,以及(iv)虚拟视觉环境VVE。在后一种情况下,受试者观察到由计算机生成的房间的3D图像。图像以这样的方式附着在头部运动上:在正常的视觉条件下,头部运动与可见视觉环境的位移之间产生了特殊的联系。通过对脚的压力中心(CPF)的轨迹进行低通滤波,接收到两个基本变量,即重心(CG)的水平运动以及CPF和CG之间的差(CPF-CG) 。这些变量(CG和CPF-CG)的变化是使用频谱分析以及随后计算频谱的中值频率(MF)和均方根值(RMS)进行估算的。在站立在振动和静止的支架上的条件下,研究变量的光谱的MF大致相同,并且对各种视觉条件没有明显的依赖性。与MF不同,人体摇摆光谱的RMS似乎更多地取决于站立状态和视觉控制模式的变化(彼此之间的差异在于对站立和视觉控制条件的更改的敏感性更高)。站在静止支撑上,两个变量的光谱的RMS在VVE和CE条件下最大,而在OE条件下最小。在站立在可移动支撑物上的条件下,人体振动被大大放大,并且揭示了两种视觉变量对两个研究变量的均方根值的不同视觉影响。在CE条件下,RMS值最大,而在其他视觉条件下(包括VVE条件),RMS值要小得多(50–40%)。因此,我们的发现表明,在VVE条件下,如果站立在静止的支撑物上,则控制姿势调整的大脑结构将忽略视觉感觉传入,但可有效地用于维持振动支撑物上的直立姿势。

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