Functional brain imaging of trigeminal neuralgia

脑干 神经科学 功能磁共振成像 伤害 体感系统 医学 导水管周围灰质 丘脑 刺激 三叉神经 三叉神经痛 感觉系统 三叉神经脊核 次级体感皮层 岛叶皮质 心理学 麻醉 中枢神经系统 中脑 内科学 受体
作者
Xavier Moisset,Nicolas Villain,Denis Ducreuxl,Alain Serriel,Gérard Cuninl,Dominique Valadel,Bernard Calvinol,Didier Bouhassiral
出处
期刊:European Journal of Pain [Wiley]
卷期号:15 (2): 124-131 被引量:88
标识
DOI:10.1016/j.ejpain.2010.06.006
摘要

We used functional magnetic resonance imaging (fMRI) to analyze changes in brain activity associated with stimulation of the cutaneous trigger zone in patients with classic trigeminal neuralgia (CTN). Fifteen consecutive patients with CTN in the second or third division of the nerve, were included in this study. The fMRI paradigm consisted of light tactile stimuli of the trigger zone and the homologous contralateral area. Stimulation of the affected side induced pain in seven patients, but was not painful in eight patients on the day of the experiment. Painful stimuli were associated with significantly increased activity in the spinal trigeminal nucleus (SpV), thalamus, primary and secondary somatosensory cortices (S1, S2), anterior cingulate cortex (ACC), insula, premotor/motor cortex, prefrontal areas, putamen, hippocampus and brainstem. Nonpainful stimulation of the trigger zone activated all but three of these structures (SpV, brainstem and ACC). After a successful surgical treatment, activation induced by stimulation of the operated side was confined to S1 and S2. Our data demonstrate the pathological hyperexcitability of the trigeminal nociceptive system, including the second order trigeminal sensory neurons during evoked attacks of CTN. Such sensitization may depend on pain modulatory systems involving both the brainstem (i.e. periaqueductal gray and adjacent structures) and interconnected cortical structures (i.e. ACC). The fact that large portions of the classical 'pain neuromatrix' were also activated during nonpainful stimulation of the trigger zone, could reflect a state of maintained sensitization of the trigeminal nociceptive systems in CTN.
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