首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Broadening of Inhibitory Tuning Underlies Contrast-Dependent Sharpening of Orientation Selectivity in Mouse Visual Cortex
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Broadening of Inhibitory Tuning Underlies Contrast-Dependent Sharpening of Orientation Selectivity in Mouse Visual Cortex

机译:抑制性调节的拓宽在鼠标视觉皮层的方向选择性的对比度依赖锐化的基础上。

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Orientation selectivity (OS) in the visual cortex has been found to be invariant to increases in stimulus contrast, a finding that cannot be accounted for by the original, purely excitatory Hubel and Wiesel model. This property of OS may be important for preserving the quality of perceived stimulus across a range of stimulus intensity. The synaptic mechanisms that can prevent a broadening of OS caused by contrast-dependent strengthening of excitatory inputs to cortical neurons remain unknown. Using in vivo loose-patch recordings, we found in excitatory neurons in layer 4 of mouse primary visual cortex (V1) that the spike response to the preferred orientation was elevated as contrast increased while that to the orthogonal orientation remained unchanged, resulting in an overall sharpening rather than a weakening of OS. Whole-cell voltage-clamp recordings further revealed that contrast increases resulted in a scaling up of excitatory conductance at all stimulus orientations. Inhibitory conductance was enhanced at a similar level as excitation for the preferred orientation, but at a significantly higher level for the orthogonal orientation. Modeling revealed that the resulting broadening of inhibitory tuning is critical for maintaining and sharpening OS at high contrast. Finally, two-photon imaging guided recordings from parvalbumin-positive (PV) inhibitory neurons revealed that the broadening of inhibition can be attributed to a contrast-dependent broadening of spike-response tuning of PV neurons. Together our results suggest that modulation of synaptic inhibition in the mouse V1 cortical circuit preserves the sharpness of response selectivity during changes of stimulus strength.
机译:视觉皮层中的定向选择性(OS)已被发现对于刺激对比的增加是不变的,这一发现不能用原始的纯粹兴奋性的Hubel和Wiesel模型来解释。 OS的此属性对于在整个刺激强度范围内保持感知到的刺激的质量可能很重要。尚无法知道由皮层神经元的兴奋性输入的造影剂依赖性增强引起的突触机制能否阻止OS增宽。使用体内的松散记录,我们在小鼠初级视觉皮层(V1)的第4层的兴奋性神经元中发现,随着对比度的增加,对首选方向的尖峰响应增加,而对正交方向的尖峰响应则保持不变,从而导致总体增强而不是削弱操作系统。全细胞电压钳记录进一步显示,对比度增加导致在所有刺激方向上兴奋性电导的比例增大。对于优选的取向,抑制电导以与激发相似的水平增强,但是对于正交的取向则以明显更高的水平增强。建模显示,抑制性调节的结果拓宽对于在高对比度下保持和锐化OS至关重要。最后,来自小白蛋白阳性(PV)抑制神经元的双光子成像引导记录显示,抑制作用的扩大可归因于PV神经元的尖峰响应调节的对比度依赖型扩大作用。在一起,我们的结果表明,在小鼠V1皮质回路中调节突触抑制作用可在刺激强度变化期间保持反应选择性的清晰度。

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