Yang Hongdian, Kwon Sung E, Severson Kyle S, O'Connor Daniel H
The Solomon H. Snyder Department of Neuroscience and Brain Science Institute, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Nat Neurosci. 2016 Jan;19(1):127-34. doi: 10.1038/nn.4183. Epub 2015 Dec 7.
During perceptual decisions about faint or ambiguous sensory stimuli, even identical stimuli can produce different choices. Spike trains from sensory cortex neurons can predict trial-to-trial variability in choice. Choice-related spiking is widely studied as a way to link cortical activity to perception, but its origins remain unclear. Using imaging and electrophysiology, we found that mouse primary somatosensory cortex neurons showed robust choice-related activity during a tactile detection task. Spike trains from primary mechanoreceptive neurons did not predict choices about identical stimuli. Spike trains from thalamic relay neurons showed highly transient, weak choice-related activity. Intracellular recordings in cortex revealed a prolonged choice-related depolarization in most neurons that was not accounted for by feed-forward thalamic input. Top-down axons projecting from secondary to primary somatosensory cortex signaled choice. An intracellular measure of stimulus sensitivity determined which neurons converted choice-related depolarization into spiking. Our results reveal how choice-related spiking emerges across neural circuits and within single neurons.
在对微弱或模糊的感觉刺激进行知觉决策时,即使是相同的刺激也会产生不同的选择。感觉皮层神经元的脉冲序列可以预测每次试验中选择的变异性。与选择相关的放电作为一种将皮层活动与知觉联系起来的方式被广泛研究,但其起源仍不清楚。利用成像和电生理学方法,我们发现小鼠初级体感皮层神经元在触觉检测任务中表现出强烈的与选择相关的活动。初级机械感受神经元的脉冲序列并不能预测对相同刺激的选择。丘脑中继神经元的脉冲序列显示出高度短暂、微弱的与选择相关的活动。皮层内的细胞内记录显示,大多数神经元中存在与选择相关的长时间去极化,这不能由丘脑前馈输入来解释。从次级体感皮层投射到初级体感皮层的自上而下的轴突发出了选择信号。对刺激敏感性的细胞内测量确定了哪些神经元将与选择相关的去极化转化为放电。我们的结果揭示了与选择相关的放电是如何在神经回路和单个神经元中出现的。