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Effect of visual field locus and oscillation frequencies on posture control in an ecological environment

机译:视野轨迹和振荡频率对生态环境中姿态控制的影响

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To examine the respective roles of central and peripheral vision in the control of posture, body sway amplitude (BSA) and postural perturbations (given by velocity root mean square or vRMS) were calculated in a group of 19 healthy young adults. The stimulus was a 3D tunnel, either static or moving sinusoidally in the anterior–posterior direction. There were nine visual field conditions: four central conditions (4, 7, 15, and 30°); four peripheral conditions (central occlusions of 4, 7, 15, and 30°); and a full visual field condition (FF). The virtual tunnel respected all the aspects of a real physical tunnel (i.e., stereoscopy and size increase with proximity). The results show that, under static conditions, central and peripheral visual fields appear to have equal importance for the control of stance. In the presence of an optic flow, peripheral vision plays a crucial role in the control of stance, since it is responsible for a compensatory sway, whereas central vision has an accessory role that seems to be related to spatial orientation.
机译:为了检查中央和周边视觉在姿势控制中的各自作用,在一组19位健康的年轻人中计算了身体摇摆幅度(BSA)和姿势扰动(由速度均方根或vRMS给出)。刺激是一个3D隧道,可以在前后方向上以静态或正弦形式移动。共有九种视野条件:四个中心条件(4、7、15和30°);以及四个外围条件(4、7、15和30°的中心遮挡);以及完整的视野条件(FF)。虚拟隧道尊重真实物理隧道的所有方面(即,立体视觉和尺寸随距离增加)。结果表明,在静态条件下,中央和周边视野对于姿态控制似乎具有同等重要性。在视线流动的情况下,周围视觉在姿势控制中起着至关重要的作用,因为它负责补偿性摇摆,而中央视觉则具有似乎与空间定向有关的辅助作用。

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