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三叉神经痛觉的生理性脑干机制:一项3T磁共振成像研究

Physiological brainstem mechanisms of trigeminal nociception: An fMRI study at 3T.

作者信息

Schulte Laura H, Sprenger Christian, May Arne

机构信息

Department of Systems Neuroscience, Center for Experimental Medicine, University Medical Center Eppendorf, Martinistr. 52, 20246 Hamburg, Germany.

Department of Systems Neuroscience, Center for Experimental Medicine, University Medical Center Eppendorf, Martinistr. 52, 20246 Hamburg, Germany.

出版信息

Neuroimage. 2016 Jan 1;124(Pt A):518-525. doi: 10.1016/j.neuroimage.2015.09.023. Epub 2015 Sep 21.

Abstract

The brainstem is a major site of processing and modulation of nociceptive input and plays a key role in the pathophysiology of various headache disorders. However, human imaging studies on brainstem function following trigeminal nociceptive stimulation are scarce as brainstem specific imaging approaches have to address multiple challenges such as magnetic field inhomogeneities and an enhanced level of physiological noise. In this study we used a viable protocol for brainstem fMRI of standardized trigeminal nociceptive stimulation to achieve detailed insight into physiological brainstem mechanisms of trigeminal nociception. We conducted a study of 21 healthy participants using a nociceptive ammonia stimulation of the left nasal mucosa with an optimized MR acquisition protocol for high resolution brainstem echoplanar imaging in combination with two different noise correction techniques. Significant BOLD responses to noxious ammonia stimulation were observed in areas typically involved in trigeminal nociceptive processing such as the spinal trigeminal nuclei (sTN), thalamus, secondary somatosensory cortex, insular cortex and cerebellum as well as in a pain modulating network including the periaqueductal gray area, hypothalamus (HT), locus coeruleus and cuneiform nucleus (CNF). Activations of the left CNF were positively correlated with pain intensity ratings. Employing psychophysiological interaction (PPI) analysis we found enhanced functional connectivity of the sTN with the contralateral sTN and HT following trigeminal nociception. We also observed enhanced functional connectivity of the CNF with the RVM during painful stimulation thus implying an important role of these two brainstem regions in central pain processing. The chosen approach to study trigeminal nociception with high-resolution fMRI offers new insight into human pain processing and might thus lead to a better understanding of headache pathophysiology.

摘要

脑干是伤害性输入处理和调制的主要部位,在各种头痛疾病的病理生理学中起关键作用。然而,由于脑干特异性成像方法必须应对诸如磁场不均匀性和生理噪声水平增强等多重挑战,关于三叉神经伤害性刺激后脑干功能的人体成像研究很少。在本研究中,我们使用了一种可行的标准化三叉神经伤害性刺激脑干功能磁共振成像方案,以深入了解三叉神经伤害感受的生理脑干机制。我们对21名健康参与者进行了一项研究,采用对左鼻黏膜进行伤害性氨刺激,并结合两种不同的噪声校正技术,使用优化的磁共振采集方案进行高分辨率脑干回波平面成像。在通常参与三叉神经伤害性处理的区域,如三叉神经脊束核(sTN)、丘脑、次级体感皮层、岛叶皮层和小脑,以及在包括导水管周围灰质区域、下丘脑(HT)、蓝斑和楔形核(CNF)的疼痛调制网络中,观察到对有害氨刺激的显著血氧水平依赖(BOLD)反应。左侧CNF的激活与疼痛强度评分呈正相关。采用心理生理交互作用(PPI)分析,我们发现三叉神经伤害感受后,sTN与对侧sTN和HT之间的功能连接增强。我们还观察到在疼痛刺激期间,CNF与延髓头端腹内侧网状结构(RVM)之间的功能连接增强,这意味着这两个脑干区域在中枢性疼痛处理中起重要作用。所选择的用高分辨率功能磁共振成像研究三叉神经伤害感受的方法为人类疼痛处理提供了新见解,因此可能有助于更好地理解头痛的病理生理学。

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