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猴 V1 中单眼神经元反应的眼优势依赖性双眼组合。

Ocular dominance-dependent binocular combination of monocular neuronal responses in macaque V1.

机构信息

School of Psychological and Cognitive Sciences, Peking University, Beijing, China.

PKU-Tsinghua Center for Life Sciences, Peking University, Beijing, China.

出版信息

Elife. 2024 Apr 3;13:RP92839. doi: 10.7554/eLife.92839.

Abstract

Primates rely on two eyes to perceive depth, while maintaining stable vision when either one eye or both eyes are open. Although psychophysical and modeling studies have investigated how monocular signals are combined to form binocular vision, the underlying neuronal mechanisms, particularly in V1 where most neurons exhibit binocularity with varying eye preferences, remain poorly understood. Here, we used two-photon calcium imaging to compare the monocular and binocular responses of thousands of simultaneously recorded V1 superficial-layer neurons in three awake macaques. During monocular stimulation, neurons preferring the stimulated eye exhibited significantly stronger responses compared to those preferring both eyes. However, during binocular stimulation, the responses of neurons preferring either eye were suppressed on the average, while those preferring both eyes were enhanced, resulting in similar neuronal responses irrespective of their eye preferences, and an overall response level similar to that with monocular viewing. A neuronally realistic model of binocular combination, which incorporates ocular dominance-dependent divisive interocular inhibition and binocular summation, is proposed to account for these findings.

摘要

灵长类动物依靠两只眼睛来感知深度,同时保持单眼或双眼睁开时的稳定视觉。尽管心理物理学和建模研究已经调查了单眼信号如何组合以形成双眼视觉,但在 V1 中,大多数神经元都表现出不同眼偏好的双眼性,其潜在的神经元机制仍知之甚少。在这里,我们使用双光子钙成像技术比较了三只清醒猕猴数千个同时记录的 V1 浅层神经元的单眼和双眼反应。在单眼刺激期间,与双眼偏好神经元相比,偏好刺激眼的神经元表现出明显更强的反应。然而,在双眼刺激期间,平均而言,偏好任一眼的神经元的反应受到抑制,而偏好双眼的神经元的反应得到增强,导致无论其眼偏好如何,神经元反应相似,整体反应水平与单眼观察相似。提出了一种神经现实的双眼组合模型,该模型结合了与眼优势相关的抑制性内抑制和双眼总和,以解释这些发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23b8/10990486/f5c56ba9218b/elife-92839-fig1.jpg

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