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Main Authors: Bai, Wenzhi, Weightman, Andrew, Connor, Rory J O, Ding, Zhengtao, Zhang, Mingming, Xie, Sheng Quan, Li, Zhenhong
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2507.04345
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author Bai, Wenzhi
Weightman, Andrew
Connor, Rory J O
Ding, Zhengtao
Zhang, Mingming
Xie, Sheng Quan
Li, Zhenhong
author_facet Bai, Wenzhi
Weightman, Andrew
Connor, Rory J O
Ding, Zhengtao
Zhang, Mingming
Xie, Sheng Quan
Li, Zhenhong
contents Transcranial magnetic stimulation (TMS) is a non-invasive and safe brain stimulation procedure with growing applications in clinical treatments and neuroscience research. However, achieving precise stimulation over prolonged sessions poses significant challenges. By integrating advanced robotics with conventional TMS, robot-assisted TMS (Robo-TMS) has emerged as a promising solution to enhance efficacy and streamline procedures. Despite growing interest, a comprehensive review from an engineering perspective has been notably absent. This paper systematically examines four critical aspects of Robo-TMS: hardware and integration, calibration and registration, neuronavigation systems, and control systems. We review state-of-the-art technologies in each area, identify current limitations, and propose future research directions. Our findings suggest that broader clinical adoption of Robo-TMS is currently limited by unverified clinical applicability, high operational complexity, and substantial implementation costs. Emerging technologies, including marker-less tracking, non-rigid registration, learning-based electric field (E-field) modelling, individualised magnetic resonance imaging (MRI) generation, robot-assisted multi-locus TMS (Robo-mTMS), and automated calibration and registration, present promising pathways to address these challenges.
format Preprint
id arxiv_https___arxiv_org_abs_2507_04345
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Robot-assisted Transcranial Magnetic Stimulation (Robo-TMS): A Review
Bai, Wenzhi
Weightman, Andrew
Connor, Rory J O
Ding, Zhengtao
Zhang, Mingming
Xie, Sheng Quan
Li, Zhenhong
Robotics
Transcranial magnetic stimulation (TMS) is a non-invasive and safe brain stimulation procedure with growing applications in clinical treatments and neuroscience research. However, achieving precise stimulation over prolonged sessions poses significant challenges. By integrating advanced robotics with conventional TMS, robot-assisted TMS (Robo-TMS) has emerged as a promising solution to enhance efficacy and streamline procedures. Despite growing interest, a comprehensive review from an engineering perspective has been notably absent. This paper systematically examines four critical aspects of Robo-TMS: hardware and integration, calibration and registration, neuronavigation systems, and control systems. We review state-of-the-art technologies in each area, identify current limitations, and propose future research directions. Our findings suggest that broader clinical adoption of Robo-TMS is currently limited by unverified clinical applicability, high operational complexity, and substantial implementation costs. Emerging technologies, including marker-less tracking, non-rigid registration, learning-based electric field (E-field) modelling, individualised magnetic resonance imaging (MRI) generation, robot-assisted multi-locus TMS (Robo-mTMS), and automated calibration and registration, present promising pathways to address these challenges.
title Robot-assisted Transcranial Magnetic Stimulation (Robo-TMS): A Review
topic Robotics
url https://arxiv.org/abs/2507.04345