Computed Tomography Attenuation of Three-Dimensional (3D) Printing Materials—Depository to Aid in Constructing 3D-Printed Phantoms

Author:

Kalidindi Yuktesh1,Ganapathy Aravinda Krishna2ORCID,Nayak Yash2ORCID,Elumalai Anusha3,Chen David Z.2ORCID,Bishop Grace3,Sanchez Adrian3,Albers Brian4,Shetty Anup S.3,Ballard David H.3ORCID

Affiliation:

1. School of Medicine, Saint Louis University, St. Louis, MO 63104, USA

2. School of Medicine, Washington University in St. Louis, St. Louis, MO 63110, USA

3. Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, MO 63110, USA

4. St. Louis Children’s Hospital Medical 3D Printing Center, BJC Healthcare, St. Louis, MO 63110, USA

Abstract

Three-dimensionally printed phantoms are increasingly used in medical imaging and research due to their cost-effectiveness and customizability, offering valuable alternatives to commercial phantoms. The purpose of this study was to assess the computed tomography (CT) attenuation characteristics of 27 resin materials from Formlabs, a 3D printing equipment and materials manufacturer. Cube phantoms (both solid and hollow constructions) produced with each resin were subjected to CT scanning under varying tube current–time products with attenuation measurements recorded in Hounsfield units (HU). The resins exhibited a wide range of attenuation values (−3.33 to 2666.27 HU), closely mimicking a range of human tissues, from fluids to dense bone structures. The resins also demonstrated consistent attenuation regardless of changes in the tube current. The CT attenuation analysis of FormLabs resins produced an archive of radiological imaging characteristics of photopolymers that can be utilized to construct more accurate tissue mimicking medical phantoms and improve the evaluation of imaging device performance.

Funder

National Institutes of Health TOP-TIER

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

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