论文标题

综述针对经颅磁刺激的生物物理建模和仿真研究

Review on Biophysical Modelling and Simulation Studies for Transcranial Magnetic Stimulation

论文作者

Gomez-Tames, Jose, Laakso, Ilkka, Hirata, Akimasa

论文摘要

经颅磁刺激(TMS)是一种非侵入性刺激用于治疗,康复治疗和神经科学研究的技术。尽管我们了解与TMS有关的物理原理和实验发展,但由于产生的剂量表现出由于复杂且受试者依赖性脑解剖结构以及缺乏可以量化大多数皮质区域TMS效果的生物标志物而表现出的不均匀分布,因此很难确定确切的大脑靶标。计算剂量测定已显着进展,并通过计算人头数字表示中的诱导电场(已知激活脑神经元的主要物理剂(已知的主要物理剂)来进行TMS评估。在这篇综述中,总结了TMS剂量学研究,阐明了解剖学和人类生物物理参数和计算方法的重要性。这篇综述表明,关于详细的皮质折叠表示的重要性以及周围脑脊液的准确建模的重要性。最近的研究还使基于患者/受试者的磁共振成像的单独优化刺激的预测,并试图通过结合神经建模来理解TMS在细胞水平上的时间影响。这些努力,加上个性化TMS计算的快速部署,将允许在临床程序中采用TMS剂量法作为标准程序。

Transcranial magnetic stimulation (TMS) is a technique for noninvasively stimulating a brain area for therapeutic, rehabilitation treatments and neuroscience research. Despite our understanding of the physical principles and experimental developments pertaining to TMS, it is difficult to identify the exact brain target as the generated dosage exhibits a non-uniform distribution owing to the complicated and subject-dependent brain anatomy and the lack of biomarkers that can quantify the effects of TMS in most cortical areas. Computational dosimetry has progressed significantly and enables TMS assessment by computation of the induced electric field (the primary physical agent known to activate the brain neurons) in a digital representation of the human head. In this review, TMS dosimetry studies are summarised, clarifying the importance of the anatomical and human biophysical parameters and computational methods. This review shows that there is a high consensus on the importance of a detailed cortical folding representation and an accurate modelling of the surrounding cerebrospinal fluid. Recent studies have also enabled the prediction of individually optimised stimulation based on magnetic resonance imaging of the patient/subject and have attempted to understand the temporal effects of TMS at the cellular level by incorporating neural modelling. These efforts, together with the fast deployment of personalised TMS computations, will permit the adoption of TMS dosimetry as a standard procedure in clinical procedures.

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