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人类双眼深度辨别力的范围和广度。

The range and scope of binocular depth discrimination in man.

作者信息

Blakemore C

出版信息

J Physiol. 1970 Dec;211(3):599-622. doi: 10.1113/jphysiol.1970.sp009296.

Abstract
  1. Depth discrimination, using disparity cues alone, was studied with a small fixation point and briefly exposed, vertical slit-shaped targets.2. The upper limit for reliable qualitative localization of a slit as nearer or further than the fixation point is 4-7 deg of absolute disparity in a convergent direction and 9-12 deg in a divergent direction. Even larger absolute disparities can be recognized in the peripheral visual field.3. Relative depth discrimination between two slit targets was measured as a function of their spatial position. The horopter (the locus of targets that appear to be fused binocularly) is the region of maximum stereoacuity and this does not necessarily coincide with the Vieth-Müller circle (the locus of zero geometric or absolute disparity). There is a gradual increase in stereo-threshold as the targets are moved out along the horopter, away from the fixation point into the peripheral visual field. The relative disparity threshold also rises, approximately exponentially, as the targets are moved in depth or absolute disparity away from the horopter.4. Relative depth discrimination is, then, operative over a very wide band of visual space around the horopter (about 3 deg of absolute disparity in the centre of the visual field and even more in the periphery).5. The findings are discussed in relation to the neurophysiology of binocular neurones of the cat cortex. The dimensions of visual space under observation by the binocular apparatus of cat and man are rather similar. The sharper decline of stereo-acuity with absolute disparity in the centre of the visual field may be related to the limits of bilateral representation of a central strip of retina in the human brain.
摘要
  1. 使用单独的视差线索,通过一个小的注视点和短暂呈现的垂直狭缝形目标来研究深度辨别。

  2. 对于狭缝相对于注视点更近或更远的可靠定性定位,其上限在会聚方向上是4 - 7度的绝对视差,在发散方向上是9 - 12度。在周边视野中甚至可以识别出更大的绝对视差。

  3. 测量两个狭缝目标之间的相对深度辨别,并将其作为它们空间位置的函数。双眼单视界(双眼看来融合的目标轨迹)是立体视锐度最大的区域,并且这不一定与维特 - 米勒圆(零几何或绝对视差的轨迹)重合。随着目标沿着双眼单视界向外移动,远离注视点进入周边视野,立体视阈值会逐渐增加。当目标在深度或绝对视差上远离双眼单视界移动时,相对视差阈值也会上升,近似呈指数增长。

  4. 那么,相对深度辨别在双眼单视界周围非常宽的视觉空间带中起作用(在视野中心约3度的绝对视差,在周边甚至更大)。

  5. 结合猫皮层双眼神经元的神经生理学对这些发现进行了讨论。猫和人的双眼视觉装置所观察的视觉空间维度相当相似。视野中心立体视锐度随绝对视差更急剧的下降可能与人脑视网膜中央条带的双侧表征限度有关。

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本文引用的文献

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Disparity limits of stereopsis.立体视觉的视差极限。
AMA Arch Ophthalmol. 1952 Jul;48(1):50-60. doi: 10.1001/archopht.1952.00920010053008.
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Disjunctive eye movements.分离性眼球运动
J Physiol. 1961 Dec;159(2):339-60. doi: 10.1113/jphysiol.1961.sp006812.
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On the limits of stereoscopic vision.论立体视觉的局限性。
J Exp Psychol. 1952 Oct;44(4):253-9. doi: 10.1037/h0057643.
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Retinal disparity and diplopia.视网膜视差与复视。
Vision Res. 1966 Aug;6(7):441-51. doi: 10.1016/0042-6989(66)90052-6.

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