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A High-Definition 3D-Printed Anthropomorphic MR Head Phantom
Stefan Popescu1, Thomas Allmendinger2, Reut Reina3
1Siemens Healthineers AG, Erlangen, Germany.
Purpose:
To empower MR scientists and clinicians to produce customized, high-definition anthropomorphic MRI phantoms directly from patient or volunteer DICOM images using commercially available 3D printers and printing materials.
Methods:
Suitable 3D printing materials were identified and calibrated to reproduce target MR image contrasts when scanned using clinical MR sequences with default acquisition parameters. A custom software tool was developed to convert the DICOM images into 3D-printing material maps, in which micrometer-scale droplets of three distinct printing materials were spatially intermixed to replicate tissue-equivalent contrasts consistent with those in the source MR images.
Results:
A prototype MR head phantom was fabricated based on 0.5 × 0.5 × 1.0 mm3 resolution head images acquired from a volunteer. When scanned with clinical MR sequences across various contrast settings, the phantom images reproduced fine anatomical details, demonstrating the phantom's ability to replicate realistic anatomy.
Conclusion:
This work advances the efforts to bridge the gap between the needs of researchers and clinicians for MRI phantoms with realistic anatomy and tissue-specific contrast, and the practical availability of such phantoms to all interested users. The approach eliminates the need for complex image segmentation, advanced computer-aided design (CAD) skills, specialized manufacturing techniques, or in-depth knowledge of material science.

