Real-Time fMRI Functional Connectivity Neurofeedback Reducing Repetitive Negative Thinking in Depression: A Double-Blind, Randomized, Sham-Controlled Proof-of-Concept Trial

默认模式网络 心理学 功能磁共振成像 楔前 随机对照试验 颞顶交界 神经反射 重性抑郁障碍 扣带回前部 后扣带 临床心理学 认知 神经科学 精神科 医学 内科学 前额叶皮质 脑电图
作者
Aki Tsuchiyagaito,Masaya Misaki,Namik Kirlić,Xiaoqian Yu,Stella M. Sánchez,Gabe Cochran,Jennifer L. Stewart,Ryan Smith,Kate D. Fitzgerald,Michael Rohan,Martin P. Paulus,Salvador M. Guinjoan
出处
期刊:Psychotherapy and Psychosomatics [Karger Publishers]
卷期号:92 (2): 87-100 被引量:18
标识
DOI:10.1159/000528377
摘要

Introduction: Repetitive negative thinking (RNT) is a cognitive process focusing on self-relevant and negative experiences, leading to a poor prognosis of major depressive disorder (MDD). We previously identified that connectivity between the precuneus/posterior cingulate cortex (PCC) and right temporoparietal junction (rTPJ) was positively correlated with levels of RNT. Objective: In this double-blind, randomized, sham-controlled, proof-of-concept trial, we employed real-time functional magnetic resonance imaging neurofeedback (rtfMRI-nf) to delineate the neural processes that may be causally linked to RNT and could potentially become treatment targets for MDD. Methods: MDD-affected individuals were assigned to either active (n = 20) or sham feedback group (n = 19). RNT was measured by the Ruminative Response Scale-brooding subscale (RRS-B) before and 1 week after the intervention. Results: Individuals in the active but not in the sham group showed a significant reduction in the RRS-B; however, a greater reduction in the PCC-rTPJ connectivity was unrelated to a greater reduction in the RRS-B. Exploratory analyses revealed that a greater reduction in the retrosplenial cortex (RSC)-rTPJ connectivity yielded a more pronounced reduction in the RRS-B in the active but not in the sham group. Conclusions: RtfMRI-nf was effective in reducing RNT. Considering the underlying mechanism of rtfMIR-nf, the RSC and rTPJ could be part of a network (i.e., default mode network) that might collectively affect the intensity of RNT. Understanding the relationship between the functional organization of targeted neural changes and clinical metrics, such as RNT, has the potential to guide the development of mechanism-based treatment of MDD.
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