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Cellular mechanisms of brain-state-dependent gain modulation in visual cortex

机译:视皮质中脑状态依赖性增益调节的细胞机制

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摘要

During locomotion, visual cortical neurons fire at higher rates to visual stimuli than during immobility while maintaining orientation selectivity. The mechanisms underlying this change in gain are not understood. We performed whole cell recordings from layer 2/3 and layer 4 visual cortical excitatory neurons as well as from parvalbumin-positive and somatostatin-positive inhibitory neurons in mice free to rest or run on a spherical treadmill. We found that the membrane potential of all cell types became more depolarized and (with the exception of somatostatin-positive interneurons) less variable during locomotion. Cholinergic input was essential for maintaining the unimodal membrane potential distribution during immobility, while noradrenergic input was necessary for the tonic depolarization associated with locomotion. Our results provide a mechanism for how neuromodulation controls the gain and signal-to-noise ratio of visual cortical neurons during changes in the state of vigilance.
机译:在运动过程中,视觉皮层神经元对视觉刺激的激发速率高于不运动过程中,同时保持方向选择性。增益变化的潜在机制尚不清楚。我们在自由休息或在球形跑步机上运行的小鼠中,从第2/3和第4层视觉皮层兴奋性神经元以及小白蛋白阳性和生长抑素阳性的抑制神经元进行了全细胞记录。我们发现,在运动过程中,所有细胞类型的膜电位都变得更去极化,并且(生长抑素阳性的中间神经元除外)变化较小。胆碱能输入对于维持固定过程中单峰膜电位的分布至关重要,而去甲肾上腺素能输入对于与运动相关的强直性去极化是必需的。我们的结果为警觉状态变化期间神经调节如何控制视觉皮层神经元的增益和信噪比提供了一种机制。

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