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September 17, 2025Proceedings on CD-ROM - International Society for Magnetic Resonance in Medicine. Scientific Meeting and Exhibition/Proceedings of the International Society for Magnetic Resonance in Medicine, Scientific Meeting and Exhibition0 citations

Innovation of a bio-approximate magnetic resonance imaging phantom: Approach to optimize relaxation time and proton density

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AYAkihiro YamashiroKSKazuki SatoKOKaoru Ootuka

Key Points

  • A bio-approximate phantom was successfully developed with adjustable relaxation times and proton density.
  • This phantom offers flexibility in simulating real-body imaging scenarios, enhancing MRI studies.
  • Using specific chemicals for adjustments, the phantom can closely mimic living tissue properties.
  • It serves as a vital tool for quantitative MRI evaluation, improving the analysis of imaging characteristics.

Abstract

Motivation: The relaxation time of most magnetic resonance phantoms is equivalent to that of the target organ. If the proton density, the differences in which are not discussed, is adjusted, studies can be performed using only phantoms. Goal(s): To develop a phantom with an adjustable proton density and relaxation time equivalent to a living body. Approach: The solvent was a solution of hydrogen peroxide, water, and a carboxy-vinyl polymer. Nickel chloride, trisodium phosphate, and powdered acrylic were used for T1, T2, and proton adjustments, respectively. Results: A phantom was developed with bio-approximate relaxation times and an adjustable proton density. Impact: Phantoms with adjustable relaxation times and proton densities can be studied similarly to imaging a living body. This development is a powerful tool for analyzing performance and image characteristics and can be applied to quantitative MRI evaluation.

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Cite This Study

Yamashiro et al. (2025) studied this question.

synapsesocial.com/papers/68d45b0b31b076d99fa5d045https://doi.org/10.58530/2025/5377
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