Author: Guo, H. Henry; Persson, Mats; Weinheimer, Oliver; Rosenberg, Jarrett; Robinson, Terry E.; Wang, Jia
Title: A calibration CT miniâ€lungâ€phantom created by 3â€D printing and subtractive manufacturing Cord-id: a50rpghm Document date: 2021_5_5
ID: a50rpghm
Snippet: We describe the creation and characterization of a calibration CT miniâ€lungâ€phantom incorporating simulated airways and groundâ€glass densities. Ten duplicate miniâ€lungâ€phantoms with Threeâ€Dimensional (3â€D) printed tubes simulating airways and gradated density polyurethane foam blocks were designed and built. Dimensional accuracy and CT numbers were measured using microâ€CT and clinical CT scanners. Microâ€CT images of airway tubes demonstrated an average dimensional variation of
Document: We describe the creation and characterization of a calibration CT miniâ€lungâ€phantom incorporating simulated airways and groundâ€glass densities. Ten duplicate miniâ€lungâ€phantoms with Threeâ€Dimensional (3â€D) printed tubes simulating airways and gradated density polyurethane foam blocks were designed and built. Dimensional accuracy and CT numbers were measured using microâ€CT and clinical CT scanners. Microâ€CT images of airway tubes demonstrated an average dimensional variation of 0.038 mm from nominal values. The five different densities of incorporated foam blocks, simulating groundâ€glass, showed mean CT numbers (±standard deviation) of −897.0 ± 1.5, −844.1 ± 1.5, −774.1 ± 2.6, −695.3 ± 1.6, and −351.0 ± 3.7 HU, respectively. Threeâ€Dimensional printing and subtractive manufacturing enabled rapid, costâ€effective production of groundâ€truth calibration miniâ€lungâ€phantoms with low interâ€sample variation that can be scanned simultaneously with the patient undergoing lung quantitative CT.
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