自杀行为的心理神经免疫内分泌和神经解剖学基础:以经颅磁刺激(TMS)为重点的潜在治疗策略

IF 3.7 Q2 IMMUNOLOGY
Hesed Virto-Farfan , Gustavo E. Tafet
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引用次数: 0

摘要

自杀行为是一种受心理、环境和生物因素影响的复杂现象。它影响到全球人口的很大一部分,每年有72万多人死亡,数百万人有自杀念头。在那些企图自杀的人中,只有一小部分发展成致命的结果,这强调了了解个人脆弱性的重要性。这篇综述探讨了自杀行为的神经解剖学基础,重点关注神经调节治疗的关键脑区和潜在途径,特别是经颅磁刺激(TMS)。背外侧前额叶皮层(DLPFC)在认知控制和情绪调节中起着核心作用,与前扣带皮层、杏仁核、眶额皮质、海马和丘脑有广泛的联系。这些神经回路的功能障碍导致自杀行为个体的冲动性增强、决策能力受损和情绪失调。DLPFC的结构和功能异常,加上神经递质系统和炎症标志物的改变,一直与自杀有关。针对左侧DLPFC的经颅磁刺激已显示出通过调节额纹状体连通性、增强神经可塑性和改善皮质兴奋性来减少自杀意念的希望。高频经颅磁刺激和加速脑波爆发刺激方案显示出快速的治疗效果,尽管需要进一步的研究来建立标准化的治疗指南。了解与自杀行为有关的解剖回路,为早期风险评估和有针对性的神经调节干预措施的发展提供了有价值的见解,旨在减轻不同精神病人群的自杀负担。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Psychoneuroimmunoendocrinological and neuroanatomical basis of suicidal behavior: potential therapeutic strategies with a focus on transcranial magnetic stimulation (TMS)
Suicidal behavior is a complex phenomenon influenced by psychological, environmental, and biological factors. It affects a significant portion of the global population, with more than 720,000 deaths annually and millions of individuals experiencing suicidal ideation. Among those who attempt suicide, only a fraction progresses to a fatal outcome, emphasizing the importance of understanding individual vulnerabilities. This review explores the neuroanatomical basis of suicidal behavior, focusing on key brain regions and potential pathways for neuromodulation therapies, particularly Transcranial Magnetic Stimulation (TMS). The dorsolateral prefrontal cortex (DLPFC) plays a central role in cognitive control and emotional regulation, with extensive connections to the anterior cingulate cortex, amygdala, orbitofrontal cortex, hippocampus, and thalamus. Dysfunctions in these circuits contribute to heightened impulsivity, impaired decision-making, and emotional dysregulation in individuals with suicidal behavior. Structural and functional abnormalities in the DLPFC, coupled with altered neurotransmitter systems and inflammatory markers, have been consistently linked to suicidality. TMS, targeting the left DLPFC, has shown promise in reducing suicidal ideation by modulating frontostriatal connectivity, enhancing neuroplasticity, and improving cortical excitability. High-frequency TMS and accelerated theta-burst stimulation protocols demonstrate rapid therapeutic effects, though further research is needed to establish standardized treatment guidelines. Understanding the anatomical circuits implicated in suicidal behavior provides valuable insights for early risk assessment and the development of targeted neuromodulation interventions aimed at reducing the burden of suicide across diverse psychiatric populations.
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来源期刊
Brain, behavior, & immunity - health
Brain, behavior, & immunity - health Biological Psychiatry, Behavioral Neuroscience
CiteScore
8.50
自引率
0.00%
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审稿时长
97 days
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