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April 22, 2026Magnetic Resonance in Medicine0 citations

Comparison of Experimental and Computational Evaluation of Gradient‐Induced Vibrations on Conductive Materials in MRI

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DGDiego González‐SotoDGDiego González‐SotoJFJulien Fontchastagner

Key Points

  • This research aims to compare experimental and computational evaluations of gradient-induced vibrations in conductive materials used in MRI contexts.
  • Performed experimental evaluations of gradient-induced vibrations on conductive materials.
  • Developed computational models to simulate and predict these vibrations.
  • Compared results to identify setup limitations and discrepancies.
  • Experimental and computational evaluations showed good agreement.
  • Identified specific differences that clarified setup limitations and uncertainties.
  • Validated the computational approach for predicting vibrations in implantable medical devices.

Abstract

Gradient-induced vibrations were evaluated both experimentally and computationally, with good agreement. Observed differences allowed for the evaluation of setup limitations and inherent uncertainties. Based on these results, the proposed computational approach can be used with a good level of confidence to evaluate and predict gradient-induced vibrations of implantable medical devices.

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Cite This Study

González‐Soto et al. (2026) studied this question.

synapsesocial.com/papers/69e865126e0dea528dde9ab5https://doi.org/10.1002/mrm.70385
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