首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Intrinsic disruption of white matter microarchitecture in first-episode, drug-naive major depressive disorder: A voxel-based meta-analysis of diffusion tensor imaging
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Intrinsic disruption of white matter microarchitecture in first-episode, drug-naive major depressive disorder: A voxel-based meta-analysis of diffusion tensor imaging

机译:在第一集发作的白质结构内在破坏,毒药 - 幼稚主要抑郁症:扩散张量成像的基于体素的荟萃分析

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Previous studies have demonstrated the influences of episodes and antidepressant drugs on white matter (WM) in patients with major depressive disorder (MDD). However, most diffusion tensor imaging (DTI) studies included highly heterogeneous individuals with different numbers of depressive episodes or medication status. To exclude the confounding effects of multiple episodes or medication, we conducted a quantitative voxel-based meta-analysis of fractional anisotropy (FA) in patients with first-episode, drug-naive MDD to identify the intrinsic WM alterations involved in the pathogenesis of MDD. The pooled meta-analysis revealed significant FA reductions in the body of the corpus callosum (CC), bilateral anterior limb of the internal capsule (ALIC), right inferior temporal gyrus (ITG) and right superior frontal gyros (SFG) in MDD patients relative to healthy controls. Meta-regression analyses revealed that FA reduction in the right ALIC and right SFG was negatively correlated with symptom severity and duration of depression, respectively. Our findings provide robust evidence that the WM impairments in the interhemispheric connections and frontal-subcortical neuronal circuits may play an important role in MDD pathogenesis.
机译:以前的研究表明,在重大抑郁症(MDD)患者中,发作和抗抑郁药物对白质(WM)的影响。然而,大多数扩散张量成像(DTI)研究包括具有不同数量的抑郁发作或药物状态的高度异质个体。为了排除多次发作或药物的混淆效果,我们对第一集集的患者进行了分数各向异性(FA)的定量体素 - 分析,用于鉴定MDD发病机制中涉及的内在WM改变。汇集的Meta分析显示MDD患者相对的内部胶囊(ALIC),右下颞率为(ITG)和右高级前陀螺(SFG)的胼calloSum(CC),双侧前肢体,双侧前肢体(SFG)相对的右侧健康的控制。元回归分析显示,右侧和右SFG的Fa减少分别与症状严重程度和抑郁症的持续时间呈负相关。我们的调查结果提供了强大的证据,即互脱球连接和额叶间神经元电路的WM损伤可能在MDD发病机制中发挥重要作用。

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