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Visual input evokes transient and strong shunting inhibition in visual cortical neurons.

机译:视觉输入在视觉皮层神经元中引起短暂而强烈的分流抑制。

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摘要

The function and nature of inhibition of neurons in the visual cortex have been the focus of both experimental and theoretical investigations. There are two ways in which inhibition can suppress synaptic excitation. In hyperpolarizing inhibition, negative and positive currents sum linearly to produce a net change in membrane potential. In contrast, shunting inhibition acts nonlinearly by causing an increase in membrane conductance; this divides the amplitude of the excitatory response. Visually evoked changes in membrane conductance have been reported to be nonsignificant or weak, supporting the hyperpolarization mode of inhibition. Here we present a new approach to studying inhibition that is based on in vivo whole-cell voltage clamping. This technique allows the continuous measurement of conductance dynamics during visual activation. We show, in neurons of cat primary visual cortex, that the response to optimally orientated flashed bars can increase the somatic input conductance to more than three times that of the resting state. The short latency of the visually evoked peak of conductance, and its apparent reversal potential suggest a dominant contribution from gamma-aminobutyric acid ((GABA)A) receptor-mediated synapses. We propose that nonlinear shunting inhibition may act during the initial stage of visual cortical processing, setting the balance between opponent 'On' and 'Off' responses in different locations of the visual receptive field.
机译:视觉皮层中神经元抑制的功能和性质一直是实验和理论研究的重点。抑制可以通过两种方式抑制突触兴奋。在超极化抑制中,负电流和正电流线性求和以产生膜电位的净变化。相反,分流抑制通过引起膜电导的增加而非线性地起作用。这划分了兴奋反应的幅度。据报道,膜电导的视觉诱发变化不明显或微弱,支持超极化抑制模式。在这里,我们提出了一种基于体内全细胞电压钳制研究抑制的新方法。该技术可以在视觉激活过程中连续测量电导动力学。我们显示,在猫原发性视觉皮层的神经元中,对最佳定向的闪光条的响应可以使体细胞输入电导增加到静止状态的三倍以上。视觉诱发的电导峰的短暂等待时间及其明显的逆转潜力表明,γ-氨基丁酸((GABA)A)受体介导的突触起了主要作用。我们提出,非线性分流抑制可能在视觉皮层处理的初始阶段起作用,从而在视觉感受野的不同位置设置对手“开”和“关”响应之间的平衡。

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