Chen Yun-Hsuan, Yang Jie, Wu Hemmings, Beier Kevin T, Sawan Mohamad
CenBRAIN Neurotech Center of Excellence, School of Engineering, Westlake University, Hangzhou, China.
Institute of Advanced Technology, Westlake Institute for Advanced Study, Hangzhou, China.
Front Psychiatry. 2023 Feb 23;14:1085036. doi: 10.3389/fpsyt.2023.1085036. eCollection 2023.
Achieving abstinence from drugs is a long journey and can be particularly challenging in the case of methamphetamine, which has a higher relapse rate than other drugs. Therefore, real-time monitoring of patients' physiological conditions before and when cravings arise to reduce the chance of relapse might help to improve clinical outcomes. Conventional treatments, such as behavior therapy and peer support, often cannot provide timely intervention, reducing the efficiency of these therapies. To more effectively treat methamphetamine addiction in real-time, we propose an intelligent closed-loop transcranial magnetic stimulation (TMS) neuromodulation system based on multimodal electroencephalogram-functional near-infrared spectroscopy (EEG-fNIRS) measurements. This review summarizes the essential modules required for a wearable system to treat addiction efficiently. First, the advantages of neuroimaging over conventional techniques such as analysis of sweat, saliva, or urine for addiction detection are discussed. The knowledge to implement wearable, compact, and user-friendly closed-loop systems with EEG and fNIRS are reviewed. The features of EEG and fNIRS signals in patients with methamphetamine use disorder are summarized. EEG biomarkers are categorized into frequency and time domain and topography-related parameters, whereas for fNIRS, hemoglobin concentration variation and functional connectivity of cortices are described. Following this, the applications of two commonly used neuromodulation technologies, transcranial direct current stimulation and TMS, in patients with methamphetamine use disorder are introduced. The challenges of implementing intelligent closed-loop TMS modulation based on multimodal EEG-fNIRS are summarized, followed by a discussion of potential research directions and the promising future of this approach, including potential applications to other substance use disorders.
实现药物戒断是一段漫长的旅程,对于甲基苯丙胺来说尤其具有挑战性,因为它的复发率比其他药物更高。因此,在渴望出现之前和出现时实时监测患者的生理状况,以降低复发几率,可能有助于改善临床结果。传统治疗方法,如行为疗法和同伴支持,往往无法提供及时干预,从而降低了这些疗法的效率。为了更有效地实时治疗甲基苯丙胺成瘾,我们提出了一种基于多模态脑电图-功能近红外光谱(EEG-fNIRS)测量的智能闭环经颅磁刺激(TMS)神经调节系统。这篇综述总结了可穿戴系统有效治疗成瘾所需的基本模块。首先,讨论了神经成像相对于用于成瘾检测的传统技术(如汗液、唾液或尿液分析)的优势。回顾了利用脑电图和功能近红外光谱实现可穿戴、紧凑且用户友好的闭环系统的相关知识。总结了甲基苯丙胺使用障碍患者的脑电图和功能近红外光谱信号特征。脑电图生物标志物分为频域、时域和地形相关参数,而对于功能近红外光谱,描述了血红蛋白浓度变化和皮层的功能连接性。在此之后,介绍了两种常用神经调节技术,即经颅直流电刺激和经颅磁刺激,在甲基苯丙胺使用障碍患者中的应用。总结了基于多模态脑电图-功能近红外光谱实现智能闭环经颅磁刺激调制的挑战,随后讨论了潜在的研究方向以及这种方法的光明前景,包括对其他物质使用障碍的潜在应用。