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方位调谐的鼠视觉皮层中的环绕抑制。

Orientation-tuned surround suppression in mouse visual cortex.

机构信息

Department of Vision and Cognition,

Department of Vision and Cognition.

出版信息

J Neurosci. 2014 Jul 9;34(28):9290-304. doi: 10.1523/JNEUROSCI.5051-13.2014.

Abstract

The firing rates of neurons in primary visual cortex (V1) are suppressed by large stimuli, an effect known as surround suppression. In cats and monkeys, the strength of suppression is sensitive to orientation; responses to regions containing uniform orientations are more suppressed than those containing orientation contrast. This effect is thought to be important for scene segmentation, but the underlying neural mechanisms are poorly understood. We asked whether it is possible to study these mechanisms in the visual cortex of mice, because of recent advances in technology for studying the cortical circuitry in mice. It is unknown whether neurons in mouse V1 are sensitive to orientation contrast. We measured the orientation selectivity of surround suppression in the different layers of mouse V1. We found strong surround suppression in layer 4 and the superficial layers, part of which was orientation tuned: iso-oriented surrounds caused more suppression than cross-oriented surrounds. Surround suppression was delayed relative to the visual response and orientation-tuned suppression was delayed further, suggesting two separate suppressive mechanisms. Previous studies proposed that surround suppression depends on the activity of inhibitory somatostatin-positive interneurons in the superficial layers. To test the involvement of the superficial layers we topically applied lidocaine. Silencing of the superficial layers did not prevent orientation-tuned suppression in layer 4. These results show that neurons in mouse V1, which lacks orientation columns, show orientation-dependent surround suppression in layer 4 and the superficial layers and that surround suppression in layer 4 does not require contributions from neurons in the superficial layers.

摘要

初级视皮层(V1)神经元的发放率被大刺激抑制,这种效应被称为周围抑制。在猫和猴子中,抑制的强度对方向敏感;对包含均匀方向的区域的反应比包含方向对比的区域的反应受到更强的抑制。这种效应被认为对场景分割很重要,但潜在的神经机制还不清楚。我们问是否有可能在老鼠的视觉皮层中研究这些机制,因为最近在研究老鼠皮层回路的技术方面取得了进展。尚不清楚老鼠 V1 中的神经元是否对方向对比敏感。我们测量了老鼠 V1 不同层中周围抑制的方向选择性。我们发现 4 层和浅层有很强的周围抑制,其中一部分是方向调谐的:同方向的周围抑制比交叉方向的周围抑制更强。周围抑制相对于视觉反应有延迟,而方向调谐的抑制则进一步延迟,这表明存在两种独立的抑制机制。先前的研究提出,周围抑制取决于浅层中具有抑制性生长抑素阳性中间神经元的活性。为了测试浅层的参与,我们局部应用了利多卡因。浅层的沉默并没有阻止 4 层中方向调谐的抑制。这些结果表明,缺乏方向柱的老鼠 V1 中的神经元在 4 层和浅层中表现出依赖于方向的周围抑制,并且 4 层中的周围抑制不需要来自浅层神经元的贡献。

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