Lott Alison, Bisson Etienne, Lajoie Yves, McComas Joan, Sveistrup Heidi
School of Rehabilitation Sciences, Faculty of Health Sciences, University of Ottawa, Ottawa, Ontario, Canada.
Cyberpsychol Behav. 2003 Oct;6(5):477-85. doi: 10.1089/109493103769710505.
Voluntary movements result in internal perturbations of balance and equilibrium. One variable regulated during movement is the position of the center of pressure (COP). Sensory information from the visual, vestibular and somatosensory systems is used in establishing relevant frames of reference for postural control. In this study, we were interested in determining whether different limitations of COP movement occur when different approaches to delivering virtual environments are used and when visual information incoherent with vestibular and somatosensory information is provided. Eighteen healthy adults completed voluntary lateral reaches under three conditions: continuous lateral reach (CLR), flatscreen virtual reality (FS), and head-mounted display virtual reality (HMD). Reaching behavior was indexed by force plate measures of maximum anterior-posterior and lateral displacement of the COP. The COP movement decreased in the lateral direction in the HMD condition relative to the FS. The maximum range of COP movement in the anterior-posterior direction increased as a function of reaching task with HMD realizing the greatest amount of movement. The lack of an exocentric frame of reference in HMD coherent with information from other sensory systems results in limiting COP movement within the base of support (BOS) in order to decrease the challenge to the postural control system.
自主运动会导致平衡和均衡的内部扰动。运动过程中一个受调节的变量是压力中心(COP)的位置。来自视觉、前庭和体感系统的感觉信息被用于建立姿势控制的相关参考框架。在本研究中,我们感兴趣的是确定当使用不同的虚拟环境呈现方式以及提供与前庭和体感信息不一致的视觉信息时,COP运动是否会出现不同的限制。18名健康成年人在三种条件下完成了自主侧向伸展:连续侧向伸展(CLR)、平板虚拟现实(FS)和头戴式显示器虚拟现实(HMD)。通过测力板测量COP的最大前后和侧向位移来衡量伸展行为。与FS相比,在HMD条件下,COP运动在侧向方向上有所减少。随着伸展任务的进行,COP在前后方向上的最大运动范围增加,HMD条件下的运动范围最大。HMD中缺乏与其他感觉系统信息一致的外心参考框架,导致COP在支撑面(BOS)内的运动受到限制,以降低对姿势控制系统的挑战。