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视觉速度和位移线索对人体平衡支撑面倾斜的贡献。

Contribution of visual velocity and displacement cues to human balancing of support surface tilt.

机构信息

Neurocenter, Neurological University Clinic, Breisacher Str. 64, 79106, Freiburg, Germany.

出版信息

Exp Brain Res. 2013 Jul;228(3):297-304. doi: 10.1007/s00221-013-3561-x. Epub 2013 May 18.

DOI:10.1007/s00221-013-3561-x
PMID:23686151
Abstract

Vision helps humans in controlling bipedal stance, interacting mainly with vestibular and proprioceptive cues. This study investigates how postural compensation of support surface tilt is compromised by selectively reducing visual velocity cues by stroboscopic illumination of a stationary visual scene. Healthy adult subjects were presented with pseudorandom tilt sequences in the sagittal plane (tilt frequency range 0.017-2.2 Hz; velocity amplitude spectrum constant up to a frequency of 0.6 Hz, angular displacement amplitude spectrum increasing with decreasing frequencies). Center of mass (COM) sway responses were recorded for stroboscopic illuminations at 48, 32, 16, 8, and 4 Hz, as well as under continuous illumination and with eyes closed. With strobe duration (5 ms) and mean luminance (1 lx) kept constant, visual acuity and perceived brightness remained constant and the visual scene was perceived as stationary. Yet, tilt-evoked COM excursions increased with decreasing strobe frequency in a graded way, with largest effects occurring at tilt frequencies where large tilt velocities coincided with small displacements. In addition, COM excursions were reduced at the lowest strobe frequency compared to eyes closed, with the largest effect occurring at tilt frequencies where tilt displacements were large. We conclude that two mechanisms exist, a velocity mechanism that deals with tilt compensation and is foremost affected by the stroboscopic illumination and a displacement mechanism. This compares favorably to previous findings that, transferred to a stance control model, suggest a velocity mechanism for tilt compensation and a position mechanism for gravity compensation.

摘要

视觉有助于人类控制双足姿势,主要与前庭和本体感觉线索相互作用。本研究通过频闪照明固定视觉场景来选择性地减少视觉速度线索,从而研究支撑面倾斜的姿势补偿是如何受到影响的。健康的成年受试者接受了矢状面的随机倾斜序列(倾斜频率范围为 0.017-2.2 Hz;速度幅度谱在 0.6 Hz 频率之前恒定,角位移幅度谱随频率降低而增加)。为频闪照明在 48、32、16、8 和 4 Hz 以及连续照明和闭眼时记录了质心(COM)摆动响应。在保持频闪持续时间(5 ms)和平均亮度(1 lx)不变的情况下,视觉敏锐度和感知亮度保持不变,视觉场景被感知为静止。然而,随着频闪频率的降低,倾斜引起的 COM 偏移以渐进的方式增加,最大影响发生在大倾斜速度与小位移相吻合的倾斜频率处。此外,与闭眼相比,COM 偏移在最低频闪频率下减小,最大影响发生在倾斜位移较大的倾斜频率处。我们得出结论,存在两种机制,一种是处理倾斜补偿的速度机制,主要受到频闪照明的影响,另一种是位移机制。这与先前的发现相比是有利的,这些发现被转移到姿势控制模型中,表明速度机制用于倾斜补偿,位置机制用于重力补偿。

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