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内侧前额叶皮质中听觉感觉运动门控的神经元编码

Neuronal coding of auditory sensorimotor gating in medial prefrontal cortex.

作者信息

Tóth Attila, Petykó Zoltán, Gálosi Rita, Szabó Imre, Karádi Kázmér, Feldmann Ádám, Péczely László, Kállai Veronika, Karádi Zoltán, Lénárd László

机构信息

Institute of Physiology, Medical School, University of Pécs, Pécs, Hungary; Centre for Neuroscience, University of Pécs, Pécs, Hungary.

Institute of Physiology, Medical School, University of Pécs, Pécs, Hungary; Centre for Neuroscience, University of Pécs, Pécs, Hungary; Molecular Neuroendocrinology and Neurophysiology Research Group, University of Pécs, Szentágothai Research Center, Pécs, Hungary.

出版信息

Behav Brain Res. 2017 May 30;326:200-208. doi: 10.1016/j.bbr.2017.03.004. Epub 2017 Mar 8.

Abstract

The medial prefrontal cortex (mPFC) is thought to be an essential brain region for sensorimotor gating. The exact neuronal mechanisms, however, have not been extensively investigated yet by delicate single unit recording methods Prepulse inhibition (PPI) of the startle response is a broadly used important tool to investigate the inhibitory processes of sensorimotor gating. The present study was designed to examine the neuronal mechanisms of sensorimotor gating in the mPFC in freely moving rats. In these experiments, the animals were subjected to both pulse alone and prepulse+pulse stimulations. Head acceleration and the neuronal activity of the mPFC were simultaneously recorded. To adequately measure the startle reflex, a new headstage with 3D-accelerometer was created. The duration of head acceleration was longer in pulse alone trials than in prepulse+pulse trial conditions, and the amplitude of head movements was significantly larger during the pulse alone than during the prepulse+pulse situations. Single unit activities in the mPFC were recorded by means of chronically implanted tetrodes during acoustic stimulation evoked startle response and PPI. High proportion of medial prefrontal cortical neurons responded to these stimulations by characteristic firing patterns: short duration equal and unequal excitatory, medium duration excitatory, and long duration excitatory and inhibitory responses were recorded. The present findings, first time in the literature, demonstrated the startle and PPI elicited neuronal activity changes of the mPFC, and thus, provided evidence for a key role of this limbic forebrain area in sensorimotor gating process.

摘要

内侧前额叶皮质(mPFC)被认为是感觉运动门控的一个重要脑区。然而,确切的神经元机制尚未通过精细的单单元记录方法进行广泛研究。惊吓反应的前脉冲抑制(PPI)是一种广泛使用的重要工具,用于研究感觉运动门控的抑制过程。本研究旨在探讨自由活动大鼠mPFC中感觉运动门控的神经元机制。在这些实验中,动物接受单独脉冲和前脉冲 + 脉冲刺激。同时记录头部加速度和mPFC的神经元活动。为了充分测量惊吓反射,创建了一种带有三维加速度计的新型头端装置。单独脉冲试验中头部加速度的持续时间比前脉冲 + 脉冲试验条件下更长,并且单独脉冲期间头部运动的幅度明显大于前脉冲 + 脉冲情况下的幅度。在听觉刺激诱发惊吓反应和PPI期间,通过长期植入的四极管记录mPFC中的单单元活动。内侧前额叶皮质神经元中有很大比例通过特征性放电模式对这些刺激做出反应:记录到了短持续时间相等和不相等的兴奋性、中等持续时间兴奋性以及长持续时间兴奋性和抑制性反应。本研究结果首次在文献中证明了惊吓和PPI引发的mPFC神经元活动变化,因此,为这个边缘前脑区域在感觉运动门控过程中的关键作用提供了证据。

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