Department of Biology, University of Virginia, Charlottesville, VA, United States.
Department of Psychology, University of Virginia, Charlottesville, VA, United States.
Front Neural Circuits. 2023 Feb 15;17:1084027. doi: 10.3389/fncir.2023.1084027. eCollection 2023.
The brain creates a single visual percept of the world with inputs from two eyes. This means that downstream structures must integrate information from the two eyes coherently. Not only does the brain meet this challenge effortlessly, it also uses small differences between the two eyes' inputs, i.e., binocular disparity, to construct depth information in a perceptual process called stereopsis. Recent studies have advanced our understanding of the neural circuits underlying stereoscopic vision and its development. Here, we review these advances in the context of three binocular properties that have been most commonly studied for visual cortical neurons: ocular dominance of response magnitude, interocular matching of orientation preference, and response selectivity for binocular disparity. By focusing mostly on mouse studies, as well as recent studies using ferrets and tree shrews, we highlight unresolved controversies and significant knowledge gaps regarding the neural circuits underlying binocular vision. We note that in most ocular dominance studies, only monocular stimulations are used, which could lead to a mischaracterization of binocularity. On the other hand, much remains unknown regarding the circuit basis of interocular matching and disparity selectivity and its development. We conclude by outlining opportunities for future studies on the neural circuits and functional development of binocular integration in the early visual system.
大脑利用来自两只眼睛的输入信息,创造出一个单一的世界视觉感知。这意味着下游结构必须将两只眼睛的信息整合起来。大脑不仅毫不费力地应对了这一挑战,还利用了两只眼睛输入之间的微小差异,即双眼视差,在一个称为立体视觉的感知过程中构建深度信息。最近的研究提高了我们对立体视觉及其发展的神经回路的理解。在这里,我们将这些进展放在最常研究的三种用于视皮层神经元的 binocular 特性的背景下进行综述:反应幅度的眼优势、方向偏好的眼间匹配以及 binocular 视差的反应选择性。我们主要关注小鼠研究,以及最近使用雪貂和树鼩的研究,强调了关于 binocular 视觉神经回路的未解决争议和重大知识空白。我们注意到,在大多数眼优势研究中,只使用单眼刺激,这可能导致对 binocularity 的错误描述。另一方面,关于眼间匹配和视差选择性及其发育的回路基础,我们知之甚少。最后,我们概述了未来在早期视觉系统中研究 binocular 整合的神经回路和功能发展的机会。