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首页> 外文期刊>Journal of affective disorders >Analysis of voxel-mirrored homotopic connectivity in medication-free, current major depressive disorder
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Analysis of voxel-mirrored homotopic connectivity in medication-free, current major depressive disorder

机译:在无药物,目前主要抑郁症中的体素镜像均运动连通性分析

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摘要

BackgroundRecent neuroimaging studies suggest that abnormal function connectivity exists in patients with major depressive disorder (MDD). The aim of this study was to further analyze the underlying neural mechanism of MDD and explore whether clinical characteristics are correlated with the alerted homotopic connectivity in patients with MDD. MethodsUsing voxel-mirrored homotopic connectivity (VMHC) during resting state, we compared 80 medication-free patients having current episodes of MDD and 124 never-depressed healthy controls (HCs) matched for age and gender. ResultsWe found decreased VMHC in patients with MDD in bilateral posterior cingulate cortex (PCC) extending to precuneus (Pre) compared with the HCs, which provided strong support for the potential role of PCC/Pre in recognizing interhemispheric connectivity deficits of MDD. Negative correlation between illness course and VMHC in PCC was observed as well. LimitationsFirst, we just compared the functional connectivity at a rest state but not under a specific task. Second, we did not mitigate the delayed effect on the measurable alterations in homotopic brain activity. Third, we did not make a longitudinal comparison after patients receiving therapeutic drugs. ConclusionsThese findings that linking illness course with functional brain changes in depression help us understand the neural architecture of MDD.
机译:背景技术神经影像学研究表明,主要抑郁症(MDD)患者存在异常函数连通性。本研究的目的是进一步分析MDD的潜在神经机制,并探讨临床特征是否与MDD患者的警报均匀性相关性相关。方法在休息状态期间患者镜晶同型连通性(VMHC),我们将80例无药物免疫发作和124个不抑郁的健康对照(HCS)的患者进行了比较了80名无药物的患者。结果我们发现,与HCS相比,双侧后铰接皮质(PCC)中MDD患者的MDD患者的VMHC减少,这为PCC / PRE的潜在作用提供了强烈的支持,该载体识别MDD的互际连接性缺陷。观察到疾病课程与PCC中VMHC之间的负相关。 LIMITITIONSFIRST,我们刚刚在休息状态下比较了功能连接,但不是在特定任务下。其次,我们没有减轻对均运动脑活动中可测量的改变的延迟影响。第三,在接受治疗药物后没有进行纵向比较。结论抑郁症患者功能脑变化的研究结果可以帮助我们理解MDD的神经结构。

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