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内侧前额叶皮质的听觉抑制性门控:单细胞与局部场电位分析

Auditory inhibitory gating in medial prefrontal cortex: Single unit and local field potential analysis.

作者信息

Mears R P, Klein A C, Cromwell H C

机构信息

Department of Psychology and the J.P. Scott Center for Neuroscience, Mind and Behavior, Psychology Building, Bowling Green State University, Bowling Green, OH 43403, USA.

出版信息

Neuroscience. 2006 Aug 11;141(1):47-65. doi: 10.1016/j.neuroscience.2006.03.040. Epub 2006 May 3.

Abstract

Medial prefrontal cortex is a crucial region involved in inhibitory processes. Damage to the medial prefrontal cortex can lead to loss of normal inhibitory control over motor, sensory, emotional and cognitive functions. The goal of the present study was to examine the basic properties of inhibitory gating in this brain region in rats. Inhibitory gating has recently been proposed as a neurophysiological assay for sensory filters in higher brain regions that potentially enable or disable information throughput. This perspective has important clinical relevance due to the findings that gating is dramatically impaired in individuals with emotional and cognitive impairments (i.e. schizophrenia). We used the standard inhibitory gating two-tone paradigm with a 500 ms interval between tones and a 10 s interval between tone pairs. We recorded both single unit and local field potentials from chronic microwire arrays implanted in the medial prefrontal cortex. We investigated short-term (within session) and long-term (between session) variability of auditory gating and additionally examined how altering the interval between the tones influenced the potency of the inhibition. The local field potentials displayed greater variability with a reduction in the amplitudes of the tone responses over both the short and long-term time windows. The decrease across sessions was most intense for the second tone response (test tone) leading to a more robust gating (lower T/C ratio). Surprisingly, single unit responses of different varieties retained similar levels of auditory responsiveness and inhibition in both the short and long-term analysis. Neural inhibition decreased monotonically related to the increase in intertone interval. This change in gating was most consistent in the local field potentials. Subsets of single unit responses did not show the lack of inhibition even for the longer intertone intervals tested (4 s interval). These findings support the idea that the medial prefrontal cortex is an important site where early inhibitory functions reside and potentially mediate psychological processes.

摘要

内侧前额叶皮质是参与抑制过程的关键区域。内侧前额叶皮质受损会导致对运动、感觉、情感和认知功能的正常抑制控制丧失。本研究的目的是检查大鼠该脑区抑制性门控的基本特性。最近,抑制性门控被提议作为一种神经生理学检测方法,用于检测高等脑区的感觉过滤器,这些过滤器可能会启用或禁用信息传递。由于发现门控在患有情感和认知障碍(即精神分裂症)的个体中显著受损,这一观点具有重要的临床意义。我们使用了标准的抑制性门控双音范式,音调之间的间隔为500毫秒,音对之间的间隔为10秒。我们从植入内侧前额叶皮质的慢性微丝阵列记录了单个神经元和局部场电位。我们研究了听觉门控的短期(在实验过程中)和长期(在不同实验之间)变异性,并额外研究了改变音调之间的间隔如何影响抑制的效力。局部场电位在短期和长期时间窗口内都表现出更大的变异性,同时音调反应的幅度降低。在不同实验之间,第二个音调反应(测试音调)的下降最为强烈,导致更强大的门控(更低的T/C比率)。令人惊讶的是,在短期和长期分析中,不同类型的单个神经元反应在听觉反应性和抑制方面保持相似的水平。神经抑制与音调间隔的增加呈单调下降关系。这种门控变化在局部场电位中最为一致。即使在测试的较长音调间隔(4秒间隔)下,单个神经元反应的子集也没有表现出抑制缺失。这些发现支持了内侧前额叶皮质是早期抑制功能所在并可能介导心理过程的重要部位这一观点。

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