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环绕掩蔽揭示了双眼相加和相减通道。

Surround masking reveals binocular adding and differencing channels.

机构信息

McGill Vision Research, Department of Ophthalmology and Visual Sciences, Montréal General Hospital, Montréal, Quebec, Canada; Research Institute of McGill University Health Centre (RI-MUHC), Canada.

McGill Vision Research, Department of Ophthalmology and Visual Sciences, Montréal General Hospital, Montréal, Quebec, Canada.

出版信息

Vision Res. 2024 Jun;219:108396. doi: 10.1016/j.visres.2024.108396. Epub 2024 Apr 18.

Abstract

Recent studies suggest that binocular adding S+ and differencing S- channels play an important role in binocular vision. To test for such a role in the context of binocular contrast detection and binocular summation, we employed a surround masking paradigm consisting of a central target disk surrounded by a mask annulus. All stimuli were horizontally oriented 0.5c/d sinusoidal gratings. Correlated stimuli were identical in interocular spatial phase while anticorrelated stimuli were opposite in interocular spatial phase. There were four target conditions: monocular left eye, monocular right eye, binocular correlated and binocular anticorrelated, and three surround mask conditions: no surround, binocularly correlated and binocularly anticorrelated. We observed consistent elevation of detection thresholds for monocular and binocular targets across the two binocular surround mask conditions. In addition, we found an interaction between the type of surround and the type of binocular target: both detection and summation were relatively enhanced by surround masks and targets with opposite interocular phase relationships and reduced by surround masks and targets with the same interocular phase relationships. The data were reasonably well accounted for by a model of binocular combination termed MAX (S+S-), in which the decision variable is the probability summation of modeled S+ and S- channel responses, with a free parameter determining the relative gains of the two channels. Our results support the existence of two channels involved in binocular combination, S+ and S-, whose relative gains are adjustable by surround context.

摘要

最近的研究表明,双眼叠加 S+ 和差分 S- 通道在双眼视觉中发挥着重要作用。为了在双眼对比检测和双眼总和的背景下检验这种作用,我们采用了一种环绕掩蔽范式,其中包括一个中央目标圆盘和一个掩蔽环。所有刺激都是水平方向的 0.5c/d 正弦光栅。相关刺激在眼间空间相位上是相同的,而相反刺激在眼间空间相位上是相反的。有四种目标条件:左眼单眼、右眼单眼、双眼相关和双眼相反,以及三种环绕掩蔽条件:无环绕、双眼相关和双眼相反。我们观察到在两种双眼环绕掩蔽条件下,单眼和双眼目标的检测阈值都一致升高。此外,我们发现环绕类型和双眼目标类型之间存在相互作用:具有相反眼间相位关系的环绕掩蔽和目标都相对增强了检测和总和,而具有相同眼间相位关系的环绕掩蔽和目标则降低了检测和总和。数据通过一种称为 MAX(S+S-)的双眼组合模型得到了很好的解释,该模型的决策变量是模拟 S+ 和 S- 通道响应的概率总和,其中一个自由参数决定了两个通道的相对增益。我们的结果支持存在两种参与双眼组合的通道,S+ 和 S-,其相对增益可通过环绕上下文进行调整。

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