首页> 外文期刊>Journal of Translational Medicine >Electroacupuncture stimulation at sub-specific acupoint and non-acupoint induced distinct brain glucose metabolism change in migraineurs: a PET-CT study
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Electroacupuncture stimulation at sub-specific acupoint and non-acupoint induced distinct brain glucose metabolism change in migraineurs: a PET-CT study

机译:PET-CT研究在亚特异性穴位和非穴位电针刺激引起的偏头痛中明显的脑葡萄糖代谢变化

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Background Acupuncture has analgesic effect to most pain conditions. Many neuroimaging studies were conducted to explore acupoint specificity in pain and other condition, but till now there is still discrepancy. Based on our previous finding, this study investigated the brain metabolism changes of acupuncture analgesia induced by sub-specific acupoint and non-acupoint stimulation. Methods 30 migraineurs were included and randomly assigned to 3 groups: Acupuncture Group (AG), Sham Acupuncture Group (SAG) and Migraine Group (MG). In AG, a combination sub-specific points of Shaoyang meridians, Luxi (TE19), San Yangluo (TE8), and Xi Yangguan(GB33) has been stimulated with electroacupuncture, while non-acupoints for SAG were used and MG received no treatment. Positron emission tomography with computed tomography (PET-CT) was used to identify differences in brain glucose metabolism between groups. Results In the AG, brain glucose metabolism increase compared with the MG was observed in the middle frontal gyrus, postcentral gyrus, the precuneus, parahippocampus, cerebellum and middle cingulate cortex (MCC), and decrease were observed in the left hemisphere of Middle Temporal Cortex (MTC).In the SAG, compared with MG, glucose metabolism increased in the poster cingulate cortex (PCC), insula, inferior temporal gyrus, MTC, superior temporal gyrus, postcentral gyrus, fusiform, inferior parietal lobe, superior parietal lobe, supramarginal gyrus, middle occipital lobe, angular and precuneus; while, decreased in cerebellum, parahippocampus. Conclusions Acupuncture stimulation at both sub-specific acupoint and non-acupoint yields ameliorating effect to migraine pain, but with evidently differed central mechanism as measured by PET-CT. The pattern of brain glucose metabolism change in acupoint is pertinent and targeted, while in non-acupoint that was disordered and randomized. These finding may provide new perspectives into the validation of acupoint specificity, optimizing acupuncture analgesia and revealing central mechanism of acupuncture analgesia by neuroimaging measurement. Trial registration This trial was registered in the Chinese Clinical Trial Registry, with registration no. ChiCTR-TRC-11001813 webcite .
机译:背景针灸对大多数疼痛状况均具有镇痛作用。进行了许多神经影像学研究,以探讨疼痛和其他情况下的穴位特异性,但直到现在仍存在差异。基于我们先前的发现,本研究调查了由亚特异性穴位和非穴位刺激引起的针刺镇痛的脑代谢变化。方法将30名偏头痛患者分为三组:针刺组(AG),假针刺组(SAG)和偏头痛组(MG)。在AG中,电针刺激了邵阳经络,芦溪(TE19),三阳洛(TE8)和西阳关(GB33)的组合亚特异性点,而SAG的非穴位被使用且MG未得到治疗。正电子发射断层扫描与计算机断层扫描(PET-CT)用于确定两组之间脑葡萄糖代谢的差异。结果在AG中,中额回,中央后回,前神经突,海马旁,小脑和中扣带回皮层(MCC)的脑葡萄糖代谢均较MG增加,而在中颞叶皮层的左半球观察到脑葡萄糖代谢减少在SAG中,与MG相比,后发性扣带回皮层(PCC),岛状,颞下回,MTC,颞上回,中央后回,梭状,下顶叶,上顶叶,上arg上的葡萄糖代谢增加回旋,枕中叶,角和前突;同时,小脑,海马旁区减少。结论针刺刺激无论在亚特异性穴位还是非穴位均可改善偏头痛的疼痛,但通过PET-CT测得的中枢机制明显不同。穴位的大脑葡萄糖代谢变化的模式是针对性和针对性的,而非穴位的脑葡萄糖代谢变化的模式是随机的和随机的。这些发现可能为穴位特异性的验证,优化针刺镇痛和通过神经影像测量揭示针刺镇痛的主要机制提供新的观点。试验注册该试验已在中国临床试验注册中心进行注册,注册号为。 ChiCTR-TRC-11001813网站。

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