Sinisalo Heikki, Kahilakoski Olli-Pekka, Souza Victor H, Nieminen Jaakko O, Rantala Robin, Tommila Timo, Usuga Isabel, Laine Mikael, Ahola Oskari, Gallegos Eva, Kozák Gábor, Vetter David Emanuel, Rissanen Ilkka, Jooß Andreas, Matsuda Renan, Soto Ana M, Li Dezhou, Humaidan Dania, Stenroos Matti, Roine Timo, Kičić Dubravko, Ziemann Ulf, Ilmoniemi Risto J
Department of Neuroscience and Biomedical Engineering, Aalto University School of Science, Espoo, Finland.
Department of Neurology & Stroke, University of Tübingen, Tübingen, Germany.
Biomed Eng Online. 2025 May 18;24(1):61. doi: 10.1186/s12938-025-01393-6.
Transcranial magnetic stimulation (TMS) is an established method for noninvasive brain stimulation, used for investigating and treating brain disorders. Recently, multi-locus TMS (mTMS) has expanded the capabilities of TMS by employing an array of overlapping stimulation coils, enabling delivery of stimulation pulses at different cortical locations without physical coil movement. We aimed to design, construct, and deploy an mTMS device and a five-coil array for clinical environment, emphasizing safety of the system.
Our mTMS device is controlled by a field-programmable gate array (FPGA). The power electronics comprises five stimulation channels, each consisting of a high-voltage capacitor connected to a pulse circuit, controlling a single coil in the array. The device contains custom-designed circuit boards, with functions such as monitoring the system state, reporting errors, and delivering pulses. Our design utilizes redundancy in both hardware and firmware to ensure robust operation and safety. We performed an automated motor mapping test to verify the electronic targeting capabilities of the device.
We constructed the mTMS device and deployed it to the Hertie Institute for Clinical Brain Research (Tübingen, Germany). Compared to our earlier prototype, the new design improves patient and operator safety. The motor mapping test confirmed that our device can accurately target stimulation pulses in the cortex.
mTMS or other similar technologies are currently not available for hospital use. The present device and its installation are major steps toward establishing multicoil TMS as an accessible clinical tool for investigation and treatment of the brain.
经颅磁刺激(TMS)是一种成熟的非侵入性脑刺激方法,用于研究和治疗脑部疾病。最近,多位点经颅磁刺激(mTMS)通过使用一系列重叠的刺激线圈扩展了TMS的功能,能够在不移动物理线圈的情况下在不同皮质位置递送刺激脉冲。我们旨在设计、构建并部署一种适用于临床环境的mTMS设备和五线圈阵列,重点强调系统的安全性。
我们的mTMS设备由现场可编程门阵列(FPGA)控制。电力电子设备包括五个刺激通道,每个通道由一个连接到脉冲电路的高压电容器组成,控制阵列中的单个线圈。该设备包含定制设计的电路板,具有监测系统状态、报告错误和递送脉冲等功能。我们的设计在硬件和固件方面都采用了冗余设计,以确保稳健运行和安全性。我们进行了自动运动映射测试,以验证该设备的电子靶向能力。
我们构建了mTMS设备并将其部署到赫蒂临床脑研究机构(德国图宾根)。与我们早期的原型相比,新设计提高了患者和操作人员的安全性。运动映射测试证实我们的设备能够准确地将刺激脉冲靶向到皮质。
mTMS或其他类似技术目前尚未可供医院使用。本设备及其安装是朝着将多线圈TMS确立为一种可用于脑部研究和治疗的临床工具迈出的重要一步。