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眼球扭转的感知补偿

Perceptual compensation for eye torsion.

作者信息

Poljac E, Lankheet M J M, van den Berg A V

机构信息

Functional Neurobiology, Utrecht University, Helmholtz School Padualaan 8, 3584 CH Utrecht, The Netherlands.

出版信息

Vision Res. 2005 Feb;45(4):485-96. doi: 10.1016/j.visres.2004.09.009.

Abstract

To correctly perceive visual directions relative to the head, one needs to compensate for the eye's orientation in the head. In this study we focus on compensation for the eye's torsion regarding objects that contain the line of sight and objects that do not pass through the fixation point. Subjects judged the location of flashed probe points relative to their binocular plane of regard, the mid-sagittal or the transverse plane of the head, while fixating straight ahead, right upward, or right downward at 30 cm distance, to evoke eye torsion according to Listing's law. In addition, we investigated the effects of head-tilt and monocular versus binocular viewing. Flashed probe points were correctly localized in the plane of regard irrespective of eccentric viewing, head-tilt, and monocular or binocular vision in nearly all subjects and conditions. Thus, eye torsion that varied by +/-9 degrees across these different conditions was in general compensated for. However, the position of probes relative to the midsagittal or the transverse plane, both true head-fixed planes, was misjudged. We conclude that judgment of the orientation of the plane of regard, a plane that contains the line of sight, is veridical, indicating accurate compensation for actual eye torsion. However, when judgment has to be made of a head-fixed plane that is offset with respect to the line of sight, eye torsion that accompanies that eye orientation appears not to be taken into account correctly.

摘要

为了正确感知相对于头部的视觉方向,人们需要补偿眼睛在头部的方位。在本研究中,我们聚焦于对包含视线的物体以及不经过注视点的物体的眼睛扭转补偿。受试者在30厘米距离处向前直视、右上或右下注视时,判断闪烁探测点相对于其双眼注视平面、头部矢状面或横断面的位置,以根据利斯廷定律诱发眼睛扭转。此外,我们还研究了头部倾斜以及单眼与双眼观察的影响。在几乎所有受试者和条件下,无论偏心注视、头部倾斜以及单眼或双眼视觉情况如何,闪烁探测点都能在注视平面内被正确定位。因此,在这些不同条件下变化达±9度的眼睛扭转总体上得到了补偿。然而,相对于矢状面或横断面这两个真正的头部固定平面的探测点位置却被误判。我们得出结论,对包含视线的注视平面方向的判断是准确的,这表明对实际眼睛扭转进行了精确补偿。然而,当必须对相对于视线偏移的头部固定平面进行判断时,伴随该眼睛方位的眼睛扭转似乎未被正确考虑。

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