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重力很重要:运动感知受方向和身体位置的影响。

Gravity matters: Motion perceptions modified by direction and body position.

作者信息

Claassen Jens, Bardins Stanislavs, Spiegel Rainer, Strupp Michael, Kalla Roger

机构信息

Department of Neurology and German Center for Vertigo and Balance Disorders, University of Munich Hospital, Campus Großhadern, Munich, Germany; Department of Neurology, University Hospital Essen, Germany.

Department of Neurology and German Center for Vertigo and Balance Disorders, University of Munich Hospital, Campus Großhadern, Munich, Germany.

出版信息

Brain Cogn. 2016 Jul;106:72-7. doi: 10.1016/j.bandc.2016.05.003. Epub 2016 May 31.

Abstract

Motion coherence thresholds are consistently higher at lower velocities. In this study we analysed the influence of the position and direction of moving objects on their perception and thereby the influence of gravity. This paradigm allows a differentiation to be made between coherent and randomly moving objects in an upright and a reclining position with a horizontal or vertical axis of motion. 18 young healthy participants were examined in this coherent threshold paradigm. Motion coherence thresholds were significantly lower when position and motion were congruent with gravity independent of motion velocity (p=0.024). In the other conditions higher motion coherence thresholds (MCT) were found at lower velocities and vice versa (p<0.001). This result confirms previous studies with higher MCT at lower velocity but is in contrast to studies concerning perception of virtual turns and optokinetic nystagmus, in which differences of perception were due to different directions irrespective of body position, i.e. perception took place in an egocentric reference frame. Since the observed differences occurred in an upright position only, perception of coherent motion in this study is defined by an earth-centered reference frame rather than by an ego-centric frame.

摘要

运动连贯性阈值在较低速度时始终较高。在本研究中,我们分析了移动物体的位置和方向对其感知的影响,进而分析了重力的影响。这种范式允许区分在直立和斜躺位置、具有水平或垂直运动轴的连贯运动物体和随机运动物体。18名年轻健康参与者在这种连贯阈值范式下接受了检查。当位置和运动与重力一致时,运动连贯性阈值显著降低,与运动速度无关(p = 0.024)。在其他条件下,在较低速度时发现较高的运动连贯性阈值(MCT),反之亦然(p < 0.001)。这一结果证实了之前关于较低速度下较高MCT的研究,但与关于虚拟转弯感知和视动性眼球震颤的研究相反,在这些研究中,感知差异是由于不同方向,与身体位置无关,即感知是在以自我为中心的参考系中发生的。由于观察到的差异仅发生在直立位置,因此本研究中连贯运动的感知是由以地球为中心的参考系而非以自我为中心的参考系定义的。

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