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Circuits for Local and Global Signal Integration in Primary Visual Cortex

机译:主视觉皮层中用于本地和全局信号集成的电路

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摘要

Contrast-dependent changes in spatial summation and contextual modulation of primary visual cortex (V1) neuron responses to stimulation of their receptive field reveal long-distance integration of visual signals within V1, well beyond the classical receptive field (cRF) of single neurons. To identify the cortical circuits mediating these long-distance computations, we have used a combination of anatomical and physiological recording methods to determine the spatial scale and retinotopic logic of intra-areal V1 horizontal connections and inter-areal feedback connections to V1. We have then compared the spatial scales of these connectional systems to the spatial dimensions of the cRF, spatial summation field (SF), and modulatory surround field of macaque V1 neurons. We find that monosynaptic horizontal connections within area V1 are of an appropriate spatial scale to mediate interactions within the SF of V1 neurons and to underlie contrast-dependent changes in SF size. Contrary to common beliefs, these connections cannot fully account for the dimensions of the surround field. The spatial scale of feedback circuits from extrastriate cortex to V1 is, instead, commensurate with the full spatial range of center–surround interactions. Thus these connections could represent an anatomical substrate for contextual modulation and global-to-local integration of visual signals. Feedback projections connect corresponding and equal-sized regions of the visual field in striate and extrastriate cortices and cover anisotropic parts of visual space, unlike V1 horizontal connections that are isotropic in the macaque. V1 isotropic connectivity demonstrates that anisotropic horizontal connections are not necessary to generate orientation selectivity. Anisotropic feedback connections may play a role in contour completion.
机译:初级视觉皮层(V1)神经元对它们的感受野的刺激的空间求和和上下文调制中的依赖于对比度的变化揭示了视觉信号在V1内的远距离整合,远远超出了单个神经元的经典感受野(cRF)。为了识别介导这些远距离计算的皮层回路,我们使用了解剖学和生理学记录方法的组合来确定区域内V1水平连接和区域间V1反馈连接的空间尺度和视黄醛逻辑。然后,我们将这些连接系统的空间尺度与猕猴V1神经元的cRF,空间总和场(SF)和调制环绕场的空间尺度进行了比较。我们发现区域V1内的单突触水平连接具有适当的空间尺度,以介导V1神经元的SF内的相互作用并成为SF大小依赖于对比度的变化的基础。与通常的看法相反,这些连接不能完全说明环绕声场的尺寸。相反,从外皮层到V1的反馈电路的空间尺度与中心-周围相互作用的整个空间范围相对应。因此,这些连接可以代表用于视觉信号的上下文调制和全局到局部集成的解剖结构。反馈投影连接横纹和横纹皮层中相应且相等大小的视野区域,并覆盖视觉空间的各向异性部分,这与猕猴中各向同性的V1水平连接不同。 V1各向同性连通性表明,各向异性水平连接对于生成方向选择性不是必需的。各向异性反馈连接可能在轮廓完成中起作用。

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