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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Psychophysical channels and ERP population responses in human visual cortex: area summation across chromatic and achromatic pathways.
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Psychophysical channels and ERP population responses in human visual cortex: area summation across chromatic and achromatic pathways.

机译:人类视觉皮层中的心理物理通道和ERP人口响应:彩色和非彩色通道的面积求和。

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In the early stages of vision, information is transmitted through distinct physiologically defined pathways. These may be related with three post-receptoral detection mechanisms defined psychophysically in humans. Accordingly, the parvocellular pathway is very sensitive to L-M-cone contrast, processes mainly foveal information and underlies fine discrimination of visual features. The magnocellular pathway is most sensitive to luminance contrast and is important for visuo-spatial and motion processing. The less understood koniocellular pathway responds to S-cone modulation outside the foveola. As such, the three pathways process visual information in a different manner, with the L-M-cone psychophysical channel being more devoted to central vision and the two other channels responding significantly to peripheral information. We measured size response functions of these three processing channels using event related potential (ERP/EEG) recordings and stimuli with various sizes and contrasts with the aim of studying coding of stimulus properties within each of these channels. The effect of stimulus size was significantly smaller for the L-M-cone channel consistent with its dominance in the central visual field. Furthermore, for this pathway, the effect of size was not modulated by stimulus contrast. In contrast, both the S-cone and achromatic channels showed a strong effect of size that was significantly modulated by contrast. Interestingly, both the S-cone and achromatic channels responded proportionally to the area of cortex activated, suggesting that the S-cone channel represents space in a similar manner to the achromatic channel. In conclusion, a fundamental relation exists between previously identified psychophysical mechanisms and population responses in the visual cortex.
机译:在视觉的早期阶段,信息是通过不同的生理学定义的途径传播的。这些可能与人类在心理上定义的三种受体后检测机制有关。因此,细小细胞途径对L-M-圆锥体对比度非常敏感,主要处理中央凹信息,并且对视觉特征进行精细区分。大细胞通路对亮度对比度最敏感,并且对于视觉空间和运动处理很重要。鲜为人知的运动细胞通路对小窝外部的S-锥体调制起反应。因此,这三种途径以不同的方式处理视觉信息,其中L-M-锥体的心理物理通道更多地集中于中央视觉,而其他两个通道则对周围的信息有显着的响应。我们使用事件相关电位(ERP / EEG)记录和各种大小和对比度的刺激来测量这三个处理通道的大小响应函数,目的是研究每个通道内的刺激属性编码。 L-M-圆锥通道的刺激大小效应明显较小,与其在中央视野中的优势相一致。此外,对于该途径,大小的影响不受刺激对比的调节。相比之下,S锥和消色差通道均显示出强烈的尺寸影响,而对比度则显着调节了尺寸。有趣的是,S-锥形通道和消色差通道均对激活的皮质区域成比例地响应,这表明S-锥形通道以与消色差通道相似的方式表示空间。总之,先前确定的心理物理机制与视觉皮层中的群体反应之间存在基本关系。

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