Heightened effective connectivity of DLPFC-mPFC and DLPFC-ACC circuits in major depressive disorder with suicidal ideation: evidence from a TMS-EEG study.

IF 6.2 1区 医学 Q1 PSYCHIATRY
Meng Chen, Xingxing Li, Wenhao Zhuang, Yongming Xu, Zhenglei Pei, Jimeng Liu, Yuanyuan Zhang, Chang Yu, Yubo Wang, Xiaoli Liu, Junfang Zhang, Guangwei Hou, Yinping Chen, Miaomiao Xu, Yafang Tang, Yan Ding, Jie Zhang, Dongsheng Zhou
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引用次数: 0

Abstract

Major depressive disorder (MDD) with suicidal ideation (SI) significantly impacts global health. Suicidal ideation is associated with alterations in brain network connectivity, yet the effective connectivity from the dorsolateral prefrontal cortex (DLPFC) to functional network nodes remains poorly understood. This study utilizes transcranial magnetic stimulation-electroencephalography (TMS-EEG) to investigate DLPFC connectivity and cortical excitability changes, providing insights into the neurobiological mechanisms and potential treatments for MDD with SI. This study recruited 166 patients with MDD and 61 healthy controls. The TMS-EEG technique was used to assess effective connectivity based on abnormal time-locked TMS evoked potentials (TEPs). Suicidal ideation was assessed using the suicidality module of the Mini International Neuropsychiatric Interview (MINI), and participants were classified into suicidal ideation (SI) and non-SI (NSI) groups based on the presence of active ideation. Subgroup analysis evaluated significant current scattering (SCS) in DLPFC-related circuits through source localization, with multiple functional networks defined as downstream regions of interest. TEP analysis at the F3 electrode revealed no significant differences between the MDD and HC groups across components. However, the SI group exhibited increased N100 amplitudes compared to the NSI group (uncorrected) and healthy controls. Source-level brain network analysis showed that the SCS of the DLPFC-mPFC and DLPFC-ACC circuits was significantly greater in the SI group than in the NSI and control groups. After controlling for age, logistic regression analysis indicated a significant association between these connectivity patterns and the presence of suicidal ideation. MDD patients with suicidal ideation exhibit altered cortical inhibition and enhanced effective connectivity between the DLPFC and key brain regions, such as the ACC and mPFC. These exploratory findings contribute to a deeper understanding of the neural circuitry involved in suicidal ideation.

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重度抑郁症伴自杀意念的DLPFC-mPFC和DLPFC-ACC回路有效连通性增强:来自TMS-EEG研究的证据
重度抑郁障碍(MDD)伴自杀意念(SI)显著影响全球健康。自杀意念与大脑网络连接的改变有关,但从背外侧前额叶皮层(DLPFC)到功能性网络节点的有效连接仍然知之甚少。本研究利用经颅磁刺激-脑电图(TMS-EEG)研究DLPFC连通性和皮质兴奋性变化,为重度抑郁症合并SI的神经生物学机制和潜在治疗提供见解。这项研究招募了166名重度抑郁症患者和61名健康对照者。基于异常时锁TMS诱发电位(TEPs),采用TMS- eeg技术评估有效连通性。采用迷你国际神经精神病学访谈(Mini)的自杀模块评估自杀意念,并根据主动意念的存在将参与者分为自杀意念组(SI)和非自杀意念组(NSI)。亚群分析通过源定位评估dlpfc相关电路中的显著电流散射(SCS),多个功能网络被定义为下游感兴趣的区域。F3电极上的TEP分析显示MDD组和HC组在各组分之间没有显著差异。然而,与NSI组(未校正)和健康对照组相比,SI组的N100振幅增加。源级脑网络分析显示,SI组DLPFC-mPFC和DLPFC-ACC回路的SCS明显高于NSI组和对照组。在控制年龄后,逻辑回归分析表明这些连接模式与自杀意念的存在有显著关联。有自杀意念的重度抑郁症患者表现出皮层抑制改变,DLPFC和大脑关键区域(如ACC和mPFC)之间的有效连接增强。这些探索性发现有助于更深入地了解与自杀意念有关的神经回路。
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来源期刊
CiteScore
11.50
自引率
2.90%
发文量
484
审稿时长
23 weeks
期刊介绍: Psychiatry has suffered tremendously by the limited translational pipeline. Nobel laureate Julius Axelrod''s discovery in 1961 of monoamine reuptake by pre-synaptic neurons still forms the basis of contemporary antidepressant treatment. There is a grievous gap between the explosion of knowledge in neuroscience and conceptually novel treatments for our patients. Translational Psychiatry bridges this gap by fostering and highlighting the pathway from discovery to clinical applications, healthcare and global health. We view translation broadly as the full spectrum of work that marks the pathway from discovery to global health, inclusive. The steps of translation that are within the scope of Translational Psychiatry include (i) fundamental discovery, (ii) bench to bedside, (iii) bedside to clinical applications (clinical trials), (iv) translation to policy and health care guidelines, (v) assessment of health policy and usage, and (vi) global health. All areas of medical research, including — but not restricted to — molecular biology, genetics, pharmacology, imaging and epidemiology are welcome as they contribute to enhance the field of translational psychiatry.
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