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疼痛矩阵再加载:身体的突显检测系统。

The pain matrix reloaded: a salience detection system for the body.

机构信息

Department of Experimental-Clinical and Health Psychology, Ghent University, Belgium.

出版信息

Prog Neurobiol. 2011 Jan;93(1):111-24. doi: 10.1016/j.pneurobio.2010.10.005. Epub 2010 Oct 30.

Abstract

Neuroimaging and neurophysiological studies have shown that nociceptive stimuli elicit responses in an extensive cortical network including somatosensory, insular and cingulate areas, as well as frontal and parietal areas. This network, often referred to as the "pain matrix", is viewed as representing the activity by which the intensity and unpleasantness of the perception elicited by a nociceptive stimulus are represented. However, recent experiments have reported (i) that pain intensity can be dissociated from the magnitude of responses in the "pain matrix", (ii) that the responses in the "pain matrix" are strongly influenced by the context within which the nociceptive stimuli appear, and (iii) that non-nociceptive stimuli can elicit cortical responses with a spatial configuration similar to that of the "pain matrix". For these reasons, we propose an alternative view of the functional significance of this cortical network, in which it reflects a system involved in detecting, orienting attention towards, and reacting to the occurrence of salient sensory events. This cortical network might represent a basic mechanism through which significant events for the body's integrity are detected, regardless of the sensory channel through which these events are conveyed. This function would involve the construction of a multimodal cortical representation of the body and nearby space. Under the assumption that this network acts as a defensive system signaling potentially damaging threats for the body, emphasis is no longer on the quality of the sensation elicited by noxious stimuli but on the action prompted by the occurrence of potential threats.

摘要

神经影像学和神经生理学研究表明,伤害性刺激会在包括体感、岛叶和扣带回区域以及额顶区域在内的广泛皮质网络中引发反应。这个网络通常被称为“疼痛矩阵”,被认为代表了由伤害性刺激引起的感知强度和不适的活动。然而,最近的实验报告了(i)疼痛强度可以与“疼痛矩阵”中的反应幅度分离,(ii)“疼痛矩阵”中的反应强烈受到伤害性刺激出现的背景的影响,以及(iii)非伤害性刺激可以引起与“疼痛矩阵”相似的皮质反应。由于这些原因,我们提出了对这个皮质网络的功能意义的另一种看法,即它反映了一个涉及检测、将注意力定向到并对显著感觉事件的发生做出反应的系统。这个皮质网络可能代表了一个基本机制,通过这个机制,身体完整性的重要事件被检测到,而不管这些事件是通过哪个感觉通道传递的。这个功能将涉及构建身体和附近空间的多模态皮质表示。假设这个网络作为一个防御系统,对身体潜在的威胁发出信号,那么重点不再是伤害性刺激引起的感觉的质量,而是潜在威胁发生时引发的行动。

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