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The neural basis of depth perception from motion parallax

机译:运动视差深度感知的神经基础

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摘要

In addition to depth cues afforded by binocular vision, the brain processes relative motion signals to perceive depth. When an observer translates relative to their visual environment, the relative motion of objects at different distances (motion parallax) provides a powerful cue to three-dimensional scene structure. Although perception of depth based on motion parallax has been studied extensively in humans, relatively little is known regarding the neural basis of this visual capability. We review recent advances in elucidating the neural mechanisms for representing depth-sign (near versus far) from motion parallax. We examine a potential neural substrate in the middle temporal visual area for depth perception based on motion parallax, and we explore the nature of the signals that provide critical inputs for disambiguating depth-sign.
机译:除了双目视觉提供的深度提示之外,大脑还处理相对运动信号以感知深度。当观察者相对于他们的视觉环境平移时,对象在不同距离处的相对运动(运动视差)为三维场景结构提供了有力的提示。尽管已经在人类中广泛研究了基于运动视差的深度感知,但是关于这种视觉能力的神经基础知之甚少。我们回顾了最近的进展,阐明了从运动视差表示深度信号(近距离还是远距离)的神经机制。我们基于运动视差检查了颞中视觉区域中潜在的神经底物,以进行深度感知,并探究了信号的本质,这些信号为消除深度信号提供了关键输入。

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