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首页> 外文期刊>Gait & posture >Influence of visual scene velocity on segmental kinematics during stance.
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Influence of visual scene velocity on segmental kinematics during stance.

机译:姿势期间视觉场景速度对节段运动学的影响。

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摘要

We investigated how the velocity of anterior-posterior movement of a visual surround affected segmental kinematics during stance. Ten healthy young adults were exposed to sinusoidal oscillation of an immersive virtual scene at five peak velocities ranging from 1.2 to 188 cm/s at each of four frequencies: 0.05, 0.1, 0.2 and 0.55 Hz. Root mean square (RMS) values of head, trunk, thigh and shank angular displacements were calculated. RMS values of head-neck, hip, knee and ankle joint angles were also calculated. RMS values of head, trunk, thigh and shank displacements exhibited significant increases at a scene velocity of 188 cm/s when compared with lower scene velocities. RMS values of hip, knee and ankle joint angles exhibited significant increases at scene velocities of 125 and 188 cm/s when compared with lower scene velocities. These results suggest that visual cues continued to drive postural adjustments even during high velocity movement of the virtual scene. Significant increases in the RMS values of the lower-limb joint angles suggest that as visually-induced postural instability increased, the body was primarily controlled as a multi-segmental structure instead of a single-link inverted pendulum, with the knee playing a key role in postural stabilization.
机译:我们调查了视觉包围前后运动的速度如何影响站立期间的节段运动学。十名健康的年轻成年人在以下四个频率(0.05、0.1、0.2和0.55 Hz)中的每一个上,以1.2至188 cm / s的五个峰值速度暴露于沉浸式虚拟场景的正弦振动。计算头部,躯干,大腿和小腿角位移的均方根(RMS)值。还计算了头颈部,髋部,膝盖和踝关节角度的RMS值。与较低的场景速度相比,在188 cm / s的场景速度下,头部,躯干,大腿和小腿位移的RMS值显示出显着增加。与较低的场景速度相比,在125和188 cm / s的场景速度下,髋,膝和踝关节角度的RMS值显示出显着增加。这些结果表明,即使在虚拟场景的高速移动过程中,视觉提示仍继续推动姿势调整。下肢关节角度的RMS值显着增加表明,随着视觉诱发的姿势不稳定性的增加,身体主要被控制为多节结构而不是单连杆倒立摆,而膝盖起着关键作用在姿势稳定中。

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