Farzan Faranak
eBrain Lab, School of Mechatronic Systems Engineering, Simon Fraser University, Surrey, British Columbia, Canada; Department of Psychiatry, University of Toronto, Toronto, Ontario, Canada; Centre for Addiction and Mental Health, Toronto, Ontario, Canada.
Biol Psychiatry. 2024 Mar 15;95(6):564-580. doi: 10.1016/j.biopsych.2023.12.018. Epub 2023 Dec 22.
Current diagnosis and treatment of psychiatric illnesses are still based on behavioral observations and self-reports, commonly leading to prolonged untreated illness. Biological markers (biomarkers) may offer an opportunity to revolutionize clinical psychiatry practice by helping provide faster and potentially more effective therapies. Transcranial magnetic stimulation concurrent with electroencephalography (TMS-EEG) is a noninvasive brain mapping methodology that can assess the functions and dynamics of specific brain circuitries in awake humans and aid in biomarker discovery. This article provides an overview of TMS-EEG-based biomarkers that may hold potential in psychiatry. The methodological readiness of the TMS-EEG approach and steps in the validation of TMS-EEG biomarkers for clinical utility are discussed. Biomarker discovery with TMS-EEG is in the early stages, and several validation steps are still required before clinical implementations are realized. Thus far, TMS-EEG predictors of response to magnetic brain stimulation treatments in particular have shown promise for translation to clinical practice. Larger-scale studies can confirm validation followed by biomarker-informed trials to assess added value compared to existing practice.
目前精神疾病的诊断和治疗仍基于行为观察和自我报告,这通常会导致疾病长期得不到治疗。生物标志物可能为临床精神病学实践带来变革,通过帮助提供更快且可能更有效的治疗方法。经颅磁刺激与脑电图同步(TMS-EEG)是一种非侵入性脑图谱方法,可评估清醒人类特定脑回路的功能和动态,并有助于发现生物标志物。本文概述了基于TMS-EEG的生物标志物在精神病学中可能具有的潜力。讨论了TMS-EEG方法的方法学成熟度以及TMS-EEG生物标志物临床应用验证的步骤。利用TMS-EEG发现生物标志物尚处于早期阶段,在实现临床应用之前仍需几个验证步骤。迄今为止,尤其是对磁脑刺激治疗反应的TMS-EEG预测指标已显示出有望转化为临床实践。大规模研究可以确认验证结果,随后进行基于生物标志物的试验,以评估与现有实践相比的附加价值。