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噪声对猫视觉皮层中方向调谐对比度不变性的作用。

The contribution of noise to contrast invariance of orientation tuning in cat visual cortex.

作者信息

Anderson J S, Lampl I, Gillespie D C, Ferster D

机构信息

Department of Neurobiology and Physiology, Northwestern University, 2153 North Campus Drive, Evanston, IL 60208, USA.

出版信息

Science. 2000 Dec 8;290(5498):1968-72. doi: 10.1126/science.290.5498.1968.

Abstract

Feedforward models of visual cortex appear to be inconsistent with a well-known property of cortical cells: contrast invariance of orientation tuning. The models' fixed threshold broadens orientation tuning as contrast increases, whereas in real cells tuning width is invariant with contrast. We have compared the orientation tuning of spike and membrane potential responses in single cells. Both are contrast invariant, yet a threshold-linear relation applied to the membrane potential accurately predicts the orientation tuning of spike responses. The key to this apparent paradox lies in the noisiness of the membrane potential. Responses that are subthreshold on average are still capable of generating spikes on individual trials. Unlike the iceberg effect, contrast invariance remains intact even as threshold narrows orientation selectivity. Noise may, by extension, smooth the average relation between membrane potential and spike rate throughout the brain.

摘要

视觉皮层的前馈模型似乎与皮层细胞的一个众所周知的特性不一致

方向调谐的对比度不变性。随着对比度增加,模型的固定阈值会拓宽方向调谐,而在实际细胞中,调谐宽度与对比度无关。我们比较了单细胞中动作电位和膜电位反应的方向调谐。两者均为对比度不变,但应用于膜电位的阈值 - 线性关系能准确预测动作电位反应的方向调谐。这一明显悖论的关键在于膜电位的噪声。平均而言低于阈值的反应在个别试验中仍能够产生动作电位。与冰山效应不同,即使阈值缩小了方向选择性,对比度不变性依然保持。由此推断,噪声可能会使整个大脑中膜电位与动作电位发放率之间的平均关系变得平滑。

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