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Updated: Oct 16, 2025

Author Spotlight: Integrating High-Resolution Intravital Imaging and MRI to Enhance Stereotactic Body Radiation Therapy Planning
Published on: April 12, 2024
Design and 3D-printing of MRI-compatible cradle for imaging mouse tumors
Deborah L Donohoe1, Katherine Dennert2, Rajeev Kumar2
1Advocate Aurora Research Institute, Advocate Aurora Health Care, 960 N. 12th Street, Milwaukee, WI, 53233, USA. deborah.donohoe@aah.org.
Background:
The ability of 3D printing using plastics and resins that are magnetic resonance imaging (MRI) compatible provides opportunities to tailor design features to specific imaging needs. In this study an MRI compatible cradle was designed to fit the need for repeatable serial images of mice within a mouse specific low field MRI.
Methods:
Several designs were reviewed which resulted in an open style stereotaxic cradle to fit within specific bore tolerances and allow maximum flexibility with interchangeable radiofrequency (RF) coils. CAD drawings were generated, cradle was printed and tested with phantom material and animals. Images were analyzed for quality and optimized using the new cradle. Testing with multiple phantoms was done to affirm that material choice did not create unwanted image artifact and to optimize imaging parameters. Once phantom testing was satisfied, mouse imaging began.
Results:
The 3D printed cradle fit instrument tolerances, accommodated multiple coil configurations and physiological monitoring equipment, and allowed for improved image quality and reproducibility while also reducing overall imaging time and animal safety.
Conclusions:
The generation of a 3D printed stereotaxic cradle was a low-cost option which functioned well for our laboratory.
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