Active maintenance of binocular correspondence leads to orientation alignment of visual receptive fields

T. Chandrapala, Bertram E. Shi, J. Triesch
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引用次数: 1

Abstract

Neural development in the visual cortex depends on the visual experience during the so-called critical period. Recent experiments have shown that under normal conditions rodents develop binocular receptive fields which have similar orientation preferences for the left and right eyes. In contrast, under conditions of monocular deprivation during the critical period, this orientation alignment does not happen. Here we propose a computational model to explain the process of orientation alignment, its underlying mechanisms, and its failure in case of monocular deprivation or uncorrelated binocular inputs. Our model is based on the recently proposed Active Efficient Coding framework that jointly develops eye movement control and sensory representations. Our model suggests that the active maintenance of a binocular visual field, which leads to correlated visual inputs from the two eyes, is essential for the process of orientation alignment. This behavior is analogous to vergence control in primates. However, due to the fact that rodents have large receptive fields with low spatial frequency tuning, the coordination of the eyes need not be very precise. The model also suggests that it is not necessary that coordinated binocular vision be maintained continuously in order for orientation alignment to develop.
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双眼对应的主动维持导致视觉感受野的定向对齐
在所谓的关键时期,视觉皮层的神经发育取决于视觉经验。最近的实验表明,在正常情况下,啮齿类动物的双眼接受区具有相似的左眼和右眼取向偏好。相反,在关键时期的单眼剥夺条件下,这种定向对齐不会发生。在这里,我们提出了一个计算模型来解释定向对准的过程,其潜在的机制,以及在单眼剥夺或不相关双目输入的情况下定向对准的失败。我们的模型是基于最近提出的主动高效编码框架,共同开发眼动控制和感觉表征。我们的模型表明,双眼视野的主动维持,导致来自两只眼睛的相关视觉输入,对于定向对齐过程至关重要。这种行为类似于灵长类动物的收敛控制。然而,由于啮齿类动物具有大的接受野和低空间频率调谐,因此眼睛的协调不需要非常精确。该模型还表明,定向对准的发展并不需要持续保持双目协调视觉。
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