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杏仁核相关电指纹可通过神经反馈训练调节,并与大脑深部激活相关:边缘型人格障碍的概念验证。

Amygdala-related electrical fingerprint is modulated with neurofeedback training and correlates with deep-brain activation: proof-of-concept in borderline personality disorder.

机构信息

Department of Psychosomatic Medicine and Psychotherapy, Central Institute of Mental Health Mannheim, Medical Faculty Mannheim/Heidelberg University, Mannheim, Germany.

Sagol Brain Institute, Tel-Aviv Sourasky Medical Center, Tel-Aviv, Israel.

出版信息

Psychol Med. 2024 Jun;54(8):1651-1660. doi: 10.1017/S0033291723003549. Epub 2023 Dec 22.

Abstract

BACKGROUND

The modulation of brain circuits of emotion is a promising pathway to treat borderline personality disorder (BPD). Precise and scalable approaches have yet to be established. Two studies investigating the amygdala-related electrical fingerprint (Amyg-EFP) in BPD are presented: one study addressing the deep-brain correlates of Amyg-EFP, and a second study investigating neurofeedback (NF) as a means to improve brain self-regulation.

METHODS

Study 1 combined electroencephalography (EEG) and simultaneous functional magnetic resonance imaging to investigate the replicability of Amyg-EFP-related brain activation found in the reference dataset ( = 24 healthy subjects, 8 female; re-analysis of published data) in the replication dataset ( = 16 female individuals with BPD). In the replication dataset, we additionally explored how the Amyg-EFP would map to neural circuits defined by the research domain criteria. Study 2 investigated a 10-session Amyg-EFP NF training in parallel to a 12-weeks residential dialectical behavior therapy (DBT) program. Fifteen patients with BPD completed the training, = 15 matched patients served as DBT-only controls.

RESULTS

Study 1 replicated previous findings and showed significant amygdala blood oxygenation level dependent activation in a whole-brain regression analysis with the Amyg-EFP. Neurocircuitry activation (negative affect, salience, and cognitive control) was correlated with the Amyg-EFP signal. Study 2 showed Amyg-EFP modulation with NF training, but patients received reversed feedback for technical reasons, which limited interpretation of results.

CONCLUSIONS

Recorded via scalp EEG, the Amyg-EFP picks up brain activation of high relevance for emotion. Administering Amyg-EFP NF in addition to standardized BPD treatment was shown to be feasible. Clinical utility remains to be investigated.

摘要

背景

调节情绪脑回路是治疗边缘型人格障碍(BPD)的一种有前途的方法。但目前尚未建立精确和可扩展的方法。本文介绍了两项关于边缘型人格障碍相关电指纹(Amyg-EFP)的研究:一项研究探讨了 Amyg-EFP 相关的大脑深部关联,另一项研究则调查了神经反馈(NF)作为改善大脑自我调节的一种手段。

方法

研究 1 结合脑电图(EEG)和同时进行的功能磁共振成像,以调查参考数据集(= 24 名健康受试者,8 名女性;对已发表数据的重新分析)中发现的 Amyg-EFP 相关大脑激活的可重复性在复制数据集(= 16 名女性 BPD 患者)中。在复制数据集,我们还探索了 Amyg-EFP 将如何映射到研究领域标准定义的神经回路。研究 2 平行于为期 12 周的住院辩证行为治疗(DBT)计划,进行了 10 次 Amyg-EFP NF 训练。15 名 BPD 患者完成了训练,15 名匹配的患者作为 DBT 对照组。

结果

研究 1 复制了先前的发现,并在整个大脑回归分析中显示出与 Amyg-EFP 相关的显著杏仁核血氧水平依赖激活。神经回路激活(负性情绪、突显和认知控制)与 Amyg-EFP 信号相关。研究 2 表明 NF 训练可调节 Amyg-EFP,但由于技术原因,患者接受了相反的反馈,这限制了结果的解释。

结论

通过头皮 EEG 记录的 Amyg-EFP 可捕获与情绪高度相关的大脑激活。此外,在标准 BPD 治疗之外给予 Amyg-EFP NF 治疗被证明是可行的。但临床实用性仍有待研究。

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