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A precise form of divisive suppression supports population coding in the primary visual cortex.

机译:一种精确的分裂抑制形式可以支持初级视觉皮层中的种群编码。

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The responses of neurons in the primary visual cortex (V1) to an optimally oriented grating are suppressed when a non-optimal grating is superimposed. Although cross-orientation suppression is thought to reflect mechanisms that maintain a distributed code for orientation, the effect of superimposed gratings on V1 population responses is unknown. Using intrinsic signal optical imaging, we found that patterns of tree shrew V1 activity evoked by superimposed equal-contrast gratings were predicted by the averages of patterns evoked by individual component gratings. This prediction held across contrasts, for summed sinusoidal gratings or nonsumming square-wave gratings, and was evident in single-unit extracellular recordings. Intracellular recordings revealed consistent levels of suppression throughout the time course of subthreshold responses. These results indicate that divisive suppression powerfully governs population responses to multiple orientations. Moreover, the specific form of suppression that weobserved appears to support independent population codes for stimulus orientation and strength and calls for a reassessment of mechanisms that underlie cross-orientation suppression.
机译:当叠加非最佳光栅时,会抑制主视觉皮层(V1)中的神经元对最佳取向的光栅的响应。尽管跨方向抑制被认为可以反映保持方向分布代码的机制,但是叠加光栅对V1总体响应的影响尚不清楚。使用本征信号光学成像,我们发现叠加等对比度光栅引起的树tree V1活动的模式是由各个分量光栅引起的模式平均值来预测的。对于总和正弦光栅或非求和方波光栅,此预测在各种对比中均存在,并且在单单元细胞外记录中很明显。细胞内记录显示,在亚阈值反应的整个过程中,抑制水平始终保持一致。这些结果表明,分裂抑制有力地控制了人口对多种取向的反应。此外,我们观察到的特定形式的抑制似乎支持刺激取向和强度的独立人群代码,并要求对构成交叉取向抑制基础的机制进行重新评估。

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