Novel method of measuring magnetically induced Forces

Abstract The magnetic field of MRI scanners can induce forces on medical devices and patient implants. Several guidelines are in place to regulate those forces to guarantee patient safety. To modernize the measurement methods recommended by these guidelines, a system was developed to measure magnetically induced forces and optionally torque. The system moves a test object through the magnetic field and measures the required motor torque. From these measurements the induced force as a function of the magnetic field gradient is calculated. The obtained values are in good agreement with those from standardized measurements, while providing higher accuracy and repeatability.

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Publication Details

Journal
Current Directions in Biomedical Engineering
Published
2026-10-01
DOI
https://doi.org/10.1515/cdbme-2026-0110
Primary Topic
Advanced MRI Techniques and Applications
Type
article
Field-Weighted Citation Impact
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article

Novel method of measuring magnetically induced Forces

U. Timm, Martin Bruschewski, Tobias Bestier
Current Directions in Biomedical Engineering
Advanced MRI Techniques and Applications
article

Novel method of measuring magnetically induced Forces

U. Timm, Martin Bruschewski, Tobias Bestier
article en

Abstract

Abstract The magnetic field of MRI scanners can induce forces on medical devices and patient implants. Several guidelines are in place to regulate those forces to guarantee patient safety. To modernize the measurement methods recommended by these guidelines, a system was developed to measure magnetically induced forces and optionally torque. The system moves a test object through the magnetic field and measures the required motor torque. From these measurements the induced force as a function of the magnetic field gradient is calculated. The obtained values are in good agreement with those from standardized measurements, while providing higher accuracy and repeatability.

Current Directions in Biomedical EngineeringVol. 12(1)
University of Rostock (DE)
Openalex Percentile: Top 12%
Advanced MRI Techniques and Applications
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