Puri B K, Agour M, Gunatilake K Dr, Fernando K Ac, Gurusinghe A I, Treasaden I H
Imaging Department, Imperial College Healthcare NHS Trust, Hammersmith Hospital, London, UK.
J Int Med Res. 2010 Jul-Aug;38(4):1468-72. doi: 10.1177/147323001003800429.
This study aimed to test the hypothesis that structural grey matter brain changes might occur in the chronic intractable pain disorder fibromyalgia when this is associated with marked fatigue in the absence of a DSM-IV-TR (Diagnostic and Statistical Manual of Mental Disorders, 4th edition, text revision) diagnosis of affective disorder. High-resolution 3-T cerebral magnetic resonance imaging scans were acquired in 10 female, right-handed, non-smoking, white Caucasian subjects: five patients with fibromyalgia associated with marked fatigue and five age-matched healthy women. Voxel-wise generalized linear modelling of the processed neuroanatomical data using permutation-based non-parametric testing, forming clusters at t > 2.3 and testing clusters for significance at P < 0.05, corrected for multiple comparisons across space, revealed significantly lower grey matter density in the patients with fibromyalgia and marked fatigue in the left supplementary motor area. This brain region plays an important role in cognitive or executive control and in the translation of painful cognition; these functions are impaired in fibromyalgia associated with marked fatigue.
当慢性顽固性疼痛疾病纤维肌痛与明显疲劳相关且不存在精神障碍诊断与统计手册第四版修订版(DSM-IV-TR)中情感障碍的诊断时,大脑结构灰质可能会发生变化。对10名右利手、不吸烟的白人女性进行了高分辨率3-T脑磁共振成像扫描:5名患有与明显疲劳相关的纤维肌痛患者和5名年龄匹配的健康女性。使用基于排列的非参数检验对处理后的神经解剖学数据进行体素级广义线性建模,在t>2.3时形成聚类,并在P<0.05时检验聚类的显著性,对跨空间的多重比较进行校正,结果显示,患有纤维肌痛且伴有明显疲劳的患者左侧辅助运动区的灰质密度显著降低。该脑区在认知或执行控制以及疼痛认知转化中起重要作用;这些功能在与明显疲劳相关的纤维肌痛中受损。