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脊髓-中脑功能连接与疼痛感知强度相关:一项脊髓-皮质联合功能磁共振成像研究

Spinal cord-midbrain functional connectivity is related to perceived pain intensity: a combined spino-cortical FMRI study.

作者信息

Sprenger Christian, Finsterbusch Jürgen, Büchel Christian

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

出版信息

J Neurosci. 2015 Mar 11;35(10):4248-57. doi: 10.1523/JNEUROSCI.4897-14.2015.

Abstract

The dynamic interaction between ascending spinocortical nociceptive signaling and the descending control of the dorsal horn (DH) by brain regions such as the periaqueductal gray matter (PAG) plays a critical role in acute and chronic pain. To noninvasively investigate the processing of nociceptive stimuli in humans, previous fMRI studies either focused exclusively on the brain or, more recently, on the spinal cord. However, to relate neuronal responses in the brain to responses in the spinal cord and to assess the functional interplay between both sites in normal and aberrant conditions, fMRI of both regions within one experiment is necessary. Employing a new MRI acquisition protocol with two separate slice stacks, individually adapted resolutions and parameter settings that are dynamically updated to the optimized settings for the respective region we assessed neuronal activity in the spinal cord and in the brain within one measurement at 3 T. Using a parametric pain paradigm with thermal stimulation to the left radial forearm, we observed BOLD responses in the ipsilateral DH of the spinal segment C6 and corresponding neuronal responses in typical pain-processing brain regions. Based on correlations of adjusted time series, we are able to reveal functional connectivity between the spinal C6-DH and the thalamus, primary somatosensory cortex, bilateral insula, bilateral striatum, and key structures of the descending pain-modulatory system such as the PAG, the hypothalamus, and the amygdala. Importantly, the individual strength of the spinal-PAG coupling predicted individual pain ratings highlighting the functional relevance of this system during physiological pain signaling.

摘要

脊髓丘脑束伤害性信号的上行传导与导水管周围灰质(PAG)等脑区对背角(DH)的下行控制之间的动态相互作用在急性和慢性疼痛中起着关键作用。为了以非侵入性方式研究人类对伤害性刺激的处理过程,以往的功能磁共振成像(fMRI)研究要么只专注于大脑,要么最近专注于脊髓。然而,为了将大脑中的神经元反应与脊髓中的反应联系起来,并评估正常和异常情况下两个部位之间的功能相互作用,在一个实验中对两个区域进行fMRI是必要的。我们采用了一种新的磁共振成像采集协议,该协议有两个独立的切片堆栈,各自具有适配的分辨率和参数设置,并根据相应区域动态更新为优化设置,在3T磁场下一次测量中评估脊髓和大脑中的神经元活动。使用对左桡侧前臂进行热刺激的参数化疼痛范式,我们在脊髓C6节段的同侧背角观察到血氧水平依赖(BOLD)反应以及在典型疼痛处理脑区的相应神经元反应。基于调整后的时间序列的相关性,我们能够揭示脊髓C6背角与丘脑、初级体感皮层、双侧脑岛、双侧纹状体以及下行疼痛调节系统的关键结构(如导水管周围灰质、下丘脑和杏仁核)之间的功能连接。重要的是,脊髓与导水管周围灰质耦合的个体强度预测了个体疼痛评分,突出了该系统在生理性疼痛信号传导过程中的功能相关性。

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