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短潜伏期眼跟踪反应:加权非线性求和预测两个沿相反方向移动的正弦波光栅之间竞争的结果。

Short-latency ocular-following responses: Weighted nonlinear summation predicts the outcome of a competition between two sine wave gratings moving in opposite directions.

作者信息

Sheliga Boris M, Quaia Christian, FitzGibbon Edmond J, Cumming Bruce G

机构信息

.

出版信息

J Vis. 2020 Jan 24;20(1):1. doi: 10.1167/jov.20.1.1.

DOI:10.1167/jov.20.1.1
PMID:31995136
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7239641/
Abstract

We recorded horizontal ocular-following responses to pairs of superimposed vertical sine wave gratings moving in opposite directions in human subjects. This configuration elicits a nonlinear interaction: when the relative contrast of the gratings is changed, the response transitions abruptly between the responses elicited by either grating alone. We explore this interaction in pairs of gratings that differ in spatial and temporal frequency and show that all cases can be described as a weighted sum of the responses to each grating presented alone, where the weights are a nonlinear function of stimulus contrast: a nonlinear weighed summation model. The weights depended on the spatial and temporal frequency of the component grating. In many cases the dominant component was not the one that produced the strongest response when presented alone, implying that the neuronal circuits assigning weights precede the stages at which motor responses to visual motion are generated. When the stimulus area was reduced, the relationship between spatial frequency and weight shifted to higher frequencies. This finding may reflect a contribution from surround suppression. The nonlinear interaction is strongest when the two components have similar spatial frequencies, suggesting that the nonlinearity may reflect interactions within single spatial frequency channels. This framework can be extended to stimuli composed of more than two components: our model was able to predict the responses to stimuli composed of three gratings. That this relatively simple model successfully captures the ocular-following responses over a wide range of spatial/temporal frequency and contrast parameters suggests that these interactions reflect a simple mechanism.

摘要

我们记录了人类受试者对成对叠加的、沿相反方向移动的垂直正弦波光栅的水平眼球跟踪反应。这种配置会引发一种非线性相互作用:当光栅的相对对比度发生变化时,反应会在由任一光栅单独引发的反应之间突然转变。我们在空间和时间频率不同的光栅对中探究这种相互作用,并表明所有情况都可以描述为对单独呈现的每个光栅的反应的加权和,其中权重是刺激对比度的非线性函数:一种非线性加权求和模型。权重取决于组成光栅的空间和时间频率。在许多情况下,占主导地位的成分并不是单独呈现时产生最强反应的那个,这意味着分配权重的神经回路先于产生对视觉运动的运动反应的阶段。当刺激区域减小时,空间频率与权重之间的关系向更高频率转移。这一发现可能反映了周边抑制的作用。当两个成分具有相似的空间频率时,非线性相互作用最强,这表明非线性可能反映了单个空间频率通道内的相互作用。这个框架可以扩展到由两个以上成分组成的刺激:我们的模型能够预测对由三个光栅组成的刺激的反应。这个相对简单的模型能够在广泛的空间/时间频率和对比度参数范围内成功捕捉眼球跟踪反应,这表明这些相互作用反映了一种简单的机制。

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本文引用的文献

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A Normalization Mechanism for Estimating Visual Motion across Speeds and Scales.一种用于跨速度和尺度估计视觉运动的归一化机制。
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Ocular-following responses to white noise stimuli in humans reveal a novel nonlinearity that results from temporal sampling.
共同机制驱动眼球追踪和运动感知。
eNeuro. 2024 Jun 20;11(6). doi: 10.1523/ENEURO.0204-24.2024. Print 2024 Jun.
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Manipulating the Fourier spectra of stimuli comprising a two-frame kinematogram to study early visual motion-detecting mechanisms: Perception versus short latency ocular-following responses.操纵包含两帧运动图的刺激的傅里叶谱,以研究早期视觉运动检测机制:感知与短潜伏期眼跟踪反应。
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