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初级视觉皮层中,风车状神经元和柱状神经元之间方向调谐的差异取决于对比度和大小。

Differences in orientation tuning between pinwheel and domain neurons in primary visual cortex depend on contrast and size.

作者信息

Liu Yong-Jun, Hashemi-Nezhad Maziar, Lyon David C

机构信息

University of California Irvine, School of Medicine, Department of Anatomy and Neurobiology, Irvine, California, United States.

Chinese Academy of Agricultural Sciences, Institute of Apicultural Research, Department of Honeybee Protection and Biosafety, Beijing, China.

出版信息

Neurophotonics. 2017 Jul;4(3):031209. doi: 10.1117/1.NPh.4.3.031209. Epub 2017 May 13.

Abstract

Intrinsic signal optical imaging reveals a highly modular map of orientation preference in the primary visual cortex (V1) of several species. This orientation map is characterized by domains and pinwheels where local circuitry is either more or less orientation selective, respectively. It has now been repeatedly demonstrated that neurons in pinwheels tend to be more broadly tuned to orientation, likely due to the broad range of orientation preference of the neighboring neurons forming pinwheels. However, certain stimulus conditions, such as a decrease in contrast or an increase in size, significantly sharpen tuning widths of V1 neurons. Here, we find that pinwheel neuron tuning widths are broader than domain neurons only for high contrast, optimally sized stimuli, conditions that maximize excitation through feedforward, and local cortical processing. When contrast was lowered or size increased, orientation tuning width sharpened and became equal. These latter conditions are conducive to less local excitation either through lower feedforward drive or by surround suppression arising from long-range cortical circuits. Tuning width differences between pinwheel and domain neurons likely arise through more local circuitry and are overcome through recruitment of longer-range cortical circuits.

摘要

内在信号光学成像揭示了几种物种初级视觉皮层(V1)中高度模块化的方向偏好图谱。这种方向图谱的特征是区域和风车状结构,其中局部回路分别对方向的选择性或多或少。现在已经反复证明,风车状结构中的神经元往往对方向的调谐更宽泛,这可能是由于形成风车状结构的相邻神经元具有广泛的方向偏好范围。然而,某些刺激条件,如对比度降低或尺寸增加,会显著锐化V1神经元的调谐宽度。在这里,我们发现,仅在高对比度、最佳尺寸的刺激条件下,风车状神经元的调谐宽度比区域神经元更宽,这些条件通过前馈和局部皮层处理最大化了兴奋。当对比度降低或尺寸增加时,方向调谐宽度会锐化并变得相等。后一种情况有利于通过较低的前馈驱动或由长程皮层回路产生的周围抑制来减少局部兴奋。风车状神经元和区域神经元之间的调谐宽度差异可能通过更多的局部回路产生,并通过长程皮层回路的募集来克服。

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