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Updated: May 1, 2026

How to Use the H1 Deep Transcranial Magnetic Stimulation Coil for Conditions Other than Depression
Published on: January 23, 2017
Three-dimensional magnetic field measurement of transcranial magnetic stimulation using a printed circuit board-based
Nianshuang Wu1,2, Zhen Wu1,2, Penghao Wang1,2
1Beijing Key Laboratory of Bioelectromagnetism, Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing, 100190, People's Republic of China.
Abstract:
Objective. Transcranial magnetic stimulation (TMS) is a promising neuromodulation therapy for treating diseases such as depression and Alzheimer's disease. However, its efficacy depends on precise magnetic field targeting. Current measurement methods face a trade-off between accuracy and complexity. Their intricate designs limit miniaturization, and they are typically confined to one-dimensional detection.Approach. This study proposes a miniaturized printed circuit board (PCB)-integrated coil array (11.10 mm × 9.10 mm × 1.60 mm) as a novel solution to replace complex probe systems for the synchronous measurement of three-dimensional magnetic field components (Bx,By,Bz) generated by a figure-8 coil.Results. Using this approach, we simulated and measured the magnetic field distribution produced by a self-made figure-8 coil, demonstrating consistency with relative errors below 5%, 10%, and 15% along the line of interest (LOI) in thex,y,zdirections, respectively. Variations in magnetic flux density from a commercial figure-8 coil were also measured at two specific spatial positions, showing consistent trends.Significance. The presented measurement probe enables feasible characterization of TMS-induced magnetic flux, with measured values aligning closely with simulated results. By integrating orthogonal coils into a compact PCB, it overcomes the traditional accuracy-complexity trade-off. Clinically, it assists in precise coil positioning during treatment, reducing off-target side effects via magnetic field validation. Technologically, its compact and cost-effective design accelerates testing of novel TMS coils, advancing the development of efficient neuromodulation devices.
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