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感觉门控:从基础科学到临床科学的转化研究

Sensory gating: a translational effort from basic to clinical science.

作者信息

Cromwell Howard C, Mears Ryan P, Wan Li, Boutros Nash N

机构信息

Department of Psychology, Bowling Green State University, Ohio 43403, USA.

出版信息

Clin EEG Neurosci. 2008 Apr;39(2):69-72. doi: 10.1177/155005940803900209.

Abstract

Sensory gating (SG) is a prevalent physiological process important for information filtering in complex systems. SG is evaluated by presenting repetitious stimuli and measuring the degree of neural inhibition that occurs. SG has been found to be impaired in several psychiatric disorders. Recent animal and human research has made great progress in the study of SG, and in this review we provide an overview of recent research on SG using different methods. Animal research has uncovered findings that suggest (1) SG is displayed by single neurons and can be similar to SG observed from scalp recordings in humans, (2) SG is found in numerous brain structures located in sensory, motor and limbic subregions, (3) SG can be significantly influenced by state changes of the organism, and (4) SG has a diverse pharmacological profile accented by a strong influence from nicotine receptor activation. Human research has addressed similar issues using deep electrode recordings of brain structures. These experiments have revealed that (1) SG can be found in cortical regions surrounding hippocampus, (2) the order of neural processing places hippocampal involvement during a later stage of sensory processing than originally thought, and (3) multiple subtypes of gating exist that could be dependent on different brain circuits and more or less influenced by alterations in organismal state. Animal and human research both have limitations. We emphasize the need for integrative approaches to understand the process and combine information between basic and clinical fields so that a more complete picture of SG will emerge.

摘要

感觉门控(SG)是一种普遍存在的生理过程,对复杂系统中的信息过滤很重要。通过呈现重复刺激并测量所发生的神经抑制程度来评估SG。已发现SG在几种精神疾病中受损。最近的动物和人体研究在SG研究方面取得了很大进展,在本综述中,我们概述了使用不同方法对SG的最新研究。动物研究揭示了一些发现,表明(1)SG由单个神经元表现出来,并且可能与从人类头皮记录中观察到的SG相似,(2)SG存在于位于感觉、运动和边缘子区域的众多脑结构中,(3)SG会受到生物体状态变化的显著影响,(4)SG具有多种药理学特征,尼古丁受体激活的强烈影响使其更为突出。人体研究使用脑结构的深部电极记录解决了类似问题。这些实验表明,(1)SG可在海马体周围的皮质区域中发现,(2)神经处理顺序表明海马体在感觉处理后期的参与程度比原先认为的要高,(3)存在多种门控亚型,可能依赖于不同的脑回路,或多或少受到生物体状态改变的影响。动物和人体研究都有局限性。我们强调需要采用综合方法来理解这一过程,并整合基础和临床领域的信息,以便更全面地了解SG。

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