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用于感觉信号检测的最佳状态的皮质膜电位特征

Cortical Membrane Potential Signature of Optimal States for Sensory Signal Detection.

作者信息

McGinley Matthew J, David Stephen V, McCormick David A

机构信息

Department of Neurobiology, Kavli Institute for Neuroscience, Yale University School of Medicine, 333 Cedar Street, New Haven, CT 06510, USA.

Oregon Health & Science University, MS: L335A, 3181 SW Sam Jackson Park Rd, OHRC, Portland, OR 97239, USA.

出版信息

Neuron. 2015 Jul 1;87(1):179-92. doi: 10.1016/j.neuron.2015.05.038. Epub 2015 Jun 11.

Abstract

The neural correlates of optimal states for signal detection task performance are largely unknown. One hypothesis holds that optimal states exhibit tonically depolarized cortical neurons with enhanced spiking activity, such as occur during movement. We recorded membrane potentials of auditory cortical neurons in mice trained on a challenging tone-in-noise detection task while assessing arousal with simultaneous pupillometry and hippocampal recordings. Arousal measures accurately predicted multiple modes of membrane potential activity, including rhythmic slow oscillations at low arousal, stable hyperpolarization at intermediate arousal, and depolarization during phasic or tonic periods of hyper-arousal. Walking always occurred during hyper-arousal. Optimal signal detection behavior and sound-evoked responses, at both sub-threshold and spiking levels, occurred at intermediate arousal when pre-decision membrane potentials were stably hyperpolarized. These results reveal a cortical physiological signature of the classically observed inverted-U relationship between task performance and arousal and that optimal detection exhibits enhanced sensory-evoked responses and reduced background synaptic activity.

摘要

信号检测任务表现的最佳状态的神经关联在很大程度上尚不清楚。一种假说认为,最佳状态表现为皮层神经元持续去极化且放电活动增强,比如在运动过程中出现的情况。我们在小鼠接受具有挑战性的噪声中音调检测任务训练时,记录了听觉皮层神经元的膜电位,同时通过同步瞳孔测量和海马体记录来评估觉醒状态。觉醒测量准确地预测了膜电位活动的多种模式,包括低觉醒时的节律性慢振荡、中等觉醒时的稳定超极化以及高觉醒的相位或紧张期的去极化。行走总是发生在高觉醒期间。当决策前膜电位稳定超极化时,在中等觉醒状态下会出现最佳信号检测行为以及阈下和放电水平的声音诱发反应。这些结果揭示了经典观察到的任务表现与觉醒之间倒U形关系的皮层生理特征,并且最佳检测表现出增强的感觉诱发反应和减少的背景突触活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f43a/4631312/de95e12e23fd/nihms699726f1.jpg

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