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Journal Article

Development and Characteristics of a Dual-Layered Vascular Phantom

Kaitlyn M. Elmer; Cassidy Caffin; Breeanna Scott; Sam E. Stephens; Morten O. Jensen
Cardiovascular Engineering and Technology · Vol. 17, Issue 1 · pp. 25-40 · 2026

Abstract

Purpose Cardiovascular phantoms are used in biomedical research and development applications, allowing for complex geometries to be studied in a controlled environment. The various layers of human tissue have been difficult to mimic in these phantoms. In this study, a novel dual-layer cardiovascular phantom is created. Methods The interior lumen is 3D printed using an elastic vat-photopolymerization resin and cast within an industry standard tissue-mimicking ballistics gel. Strips of the 3D-printed resin were prepared and tested to determine Young’s modulus, Ultimate tensile strength, and elongation at break. Results The final phantoms were reproducible, semi-transparent, and suitable for microCT scanning. Additionally, the 3D-printed elastic materials had: Young’s Modulus of 12 +/- 3.2 MPa, UTS of 1.27 +/- 0.44 MPa, and elongation at break of 29 +/- 9%. These results are within the physiological ranges of human tissues. There was a moderate correlation between the thickness of the sample and stiffness, which may be important depending on the application of the models. Conclusion The methods for producing a dual-layered phantom are reproducible and appropriate for a variety of biomedical applications.

Bibliographic Information

JournalCardiovascular Engineering and Technology
PublisherSpringer
Publication Date2026-02-01
Publication Year2026
Volume17
Issue1
Pages25-40
Document TypeJournal Article
Print ISSN1869-408X
eISSN1869-4098
DOI10.1007/s13239-025-00810-0

Access Information

NARA Access Coverage2010-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13239
Publisher PageOpen Publisher Page
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