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疼痛相关脑激活的定位:神经影像学数据的荟萃分析。

Localization of pain-related brain activation: a meta-analysis of neuroimaging data.

机构信息

Département de Physiologie, Groupe de Recherche Sur le Système Nerveux Central, Université de Montréal, Montréal, Québec, Canada.

出版信息

Hum Brain Mapp. 2013 Jan;34(1):109-49. doi: 10.1002/hbm.21416. Epub 2011 Dec 1.

Abstract

A meta-analysis of 140 neuroimaging studies was performed using the activation-likelihood-estimate (ALE) method to explore the location and extent of activation in the brain in response to noxious stimuli in healthy volunteers. The first analysis involved the creation of a likelihood map illustrating brain activation common across studies using noxious stimuli. The left thalamus, right anterior cingulate cortex (ACC), bilateral anterior insulae, and left dorsal posterior insula had the highest likelihood of being activated. The second analysis contrasted noxious cold with noxious heat stimulation and revealed higher likelihood of activation to noxious cold in the subgenual ACC and the amygdala. The third analysis assessed the implications of using either a warm stimulus or a resting baseline as the control condition to reveal activation attributed to noxious heat. Comparing noxious heat to warm stimulation led to peak ALE values that were restricted to cortical regions with known nociceptive input. The fourth analysis tested for a hemispheric dominance in pain processing and showed the importance of the right hemisphere, with the strongest ALE peaks and clusters found in the right insula and ACC. The fifth analysis compared noxious muscle with cutaneous stimuli and the former type was more likely to evoke activation in the posterior and anterior cingulate cortices, precuneus, dorsolateral prefrontal cortex, and cerebellum. In general, results indicate that some brain regions such as the thalamus, insula and ACC have a significant likelihood of activation regardless of the type of noxious stimuli, while other brain regions show a stimulus-specific likelihood of being activated.

摘要

采用激活似然估计(ALE)方法对 140 项神经影像学研究进行荟萃分析,以探讨健康志愿者对伤害性刺激的大脑反应中的激活部位和程度。第一次分析涉及创建一个似然图,该图说明了使用伤害性刺激时大脑激活的共同部位。左丘脑、右前扣带回皮质(ACC)、双侧前岛叶和左背侧后岛叶的激活可能性最高。第二次分析比较了伤害性冷刺激与伤害性热刺激,结果显示伤害性冷刺激时 subgenual ACC 和杏仁核的激活可能性更高。第三次分析评估了使用温暖刺激或静息基线作为对照条件来揭示归因于伤害性热刺激的激活的影响。将伤害性热刺激与温暖刺激进行比较,导致 ALE 值的峰值局限于具有已知伤害性传入的皮质区域。第四次分析测试了疼痛处理中的半球优势,结果表明右半球的重要性,最强的 ALE 峰值和簇位于右岛叶和 ACC。第五次分析比较了伤害性肌肉刺激与皮肤刺激,前者更有可能在扣带回皮质后部和前部、后扣带回、背外侧前额皮质和小脑中引起激活。总的来说,结果表明,一些大脑区域,如丘脑、岛叶和 ACC,无论伤害性刺激的类型如何,都有很高的激活可能性,而其他大脑区域则表现出特定刺激的激活可能性。

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本文引用的文献

1
Painful muscle stimulation preferentially activates emotion-related brain regions compared to painful skin stimulation.
Neurosci Res. 2011 Jul;70(3):285-93. doi: 10.1016/j.neures.2011.04.001. Epub 2011 Apr 14.
2
Aversion-related circuitry in the cerebellum: responses to noxious heat and unpleasant images.
J Neurosci. 2011 Mar 9;31(10):3795-804. doi: 10.1523/JNEUROSCI.6709-10.2011.
3
Brain imaging of mechanically induced muscle versus cutaneous pain.
Neurosci Res. 2011 May;70(1):78-84. doi: 10.1016/j.neures.2011.01.015. Epub 2011 Feb 1.
4
Activation of central sympathetic networks during innocuous and noxious somatosensory stimulation.
Neuroimage. 2011 Mar 1;55(1):216-24. doi: 10.1016/j.neuroimage.2010.11.061. Epub 2010 Nov 29.
5
A multisensory investigation of the functional significance of the "pain matrix".
Neuroimage. 2011 Feb 1;54(3):2237-49. doi: 10.1016/j.neuroimage.2010.09.084. Epub 2010 Oct 12.
6
Brain correlates of stress-induced analgesia.
Pain. 2010 Nov;151(2):522-529. doi: 10.1016/j.pain.2010.08.016.
7
Bilateral activation of the trigeminothalamic tract by acute orofacial cutaneous and muscle pain in humans.
Pain. 2010 Nov;151(2):384-393. doi: 10.1016/j.pain.2010.07.027. Epub 2010 Aug 21.
9
The representation of experimental tooth pain from upper and lower jaws in the human trigeminal pathway.
Pain. 2010 Jun;149(3):529-538. doi: 10.1016/j.pain.2010.03.027. Epub 2010 Apr 10.
10
Coding of incisional pain in the brain: a functional magnetic resonance imaging study in human volunteers.
Anesthesiology. 2010 Feb;112(2):406-17. doi: 10.1097/ALN.0b013e3181ca4c82.

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