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Surround suppression supports second-order feature encoding by macaque V1 and V2 neurons

机译:环绕声抑制支持猕猴V1和V2神经元的二阶特征编码

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摘要

Single neurons in areas V1 and V2 of macaque visual cortex respond selectively to luminance-modulated stimuli. These responses are often influenced by context, for example when stimuli extend outside the classical receptive field (CRF). These contextual phenomena, observed in many sensory areas, reflect a fundamental cortical computation and may inform perception by signaling second-order visual features which are defined by spatial relationships of contrast, orientation and spatial frequency. In the anesthetized, paralyzed macaque, we measured single-unit responses to a drifting preferred sinusoidal grating; low spatial frequency sinusoidal contrast modulations were applied to the grating, creating contrast-modulated, second-order forms. Most neurons responded selectively to the orientation of the contrast modulation of the preferred grating and were therefore second-order orientation-selective. Second-order selectivity was created by the asymmetric spatial organization of the excitatory CRF and suppressive extraclassical surround. We modeled these receptive field subregions using spatial Gaussians, sensitive to the modulation of contrast (not luminance) of the preferred carrier grating, that summed linearly and were capable of recovering asymmetrical receptive field organizations. Our modeling suggests that second-order selectivity arises both from elongated excitatory CRFs, asymmetrically organized extraclassical surround suppression, or both. We validated the model by successfully testing its predictions against conventional surround suppression measurements and spike-triggered analysis of second-order form responses. Psychophysical adaptation measurements on human observers revealed a pattern of second-order form selectivity consistent with neural response patterns. We therefore propose that cortical cells in primates do double duty, providing signals about both first- and second-order forms.
机译:猕猴视觉皮层区域V1和V2中的单个神经元选择性地响应亮度调制的刺激。这些反应通常受情境影响,例如当刺激超出经典感受野(CRF)时。在许多感觉区域中观察到的这些情境现象反映了基本的皮层计算,并且可能通过发信号表示由对比度,方向和空间频率的空间关系定义的二阶视觉特征来告知感知。在麻醉,麻痹的猕猴中,我们测量了对漂移的优选正弦光栅的单单元响应。将低空间频率正弦对比度调制应用于光栅,从而创建对比度调制的二阶形式。大多数神经元对优选光栅的对比度调制的方向做出选择性响应,因此是二阶方向选择性的。二级选择性是由兴奋性CRF和抑制性经典外环境的不对称空间组织产生的。我们使用空间高斯模型对这些接收场子区域进行建模,该区域对首选载波光栅的对比度(而非亮度)的调制敏感,该调制是线性相加的,并且能够恢复非对称接收场组织。我们的模型表明,二阶选择性既来自于拉长的兴奋性CRF,也来自非对称组织的超经典环绕抑制,或两者兼而有之。我们通过针对常规环绕抑制测量和二阶形式响应的尖峰触发分析成功地测试了其预测,从而验证了该模型。在人类观察者身上进行的心理物理适应性测量显示出与神经反应模式一致的二阶形式选择性模式。因此,我们提出灵长类中的皮质细胞具有双重作用,提供有关一阶和二阶形式的信号。

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