Three-dimensional printed optical phantoms with customized absorption and scattering properties

Three-dimensional (3D) printing offers the promise of fabricating optical phantoms with arbitrary geometry, but commercially available thermoplastics provide only a small range of physiologically relevant absorption (µa) and reduced scattering (µs`) values. Here we demonstrate customizable acrylonit...

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Veröffentlicht in:Biomedical optics express 2015-11, Vol.6 (11), p.4212-4220
Hauptverfasser: Diep, Phuong, Pannem, Sanjana, Sweer, Jordan, Lo, Justine, Snyder, Michael, Stueber, Gabriella, Zhao, Yanyu, Tabassum, Syeda, Istfan, Raeef, Wu, Junjie, Erramilli, Shyamsunder, Roblyer, Darren
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Sprache:eng
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Zusammenfassung:Three-dimensional (3D) printing offers the promise of fabricating optical phantoms with arbitrary geometry, but commercially available thermoplastics provide only a small range of physiologically relevant absorption (µa) and reduced scattering (µs`) values. Here we demonstrate customizable acrylonitrile butadiene styrene (ABS) filaments for dual extrusion 3D printing of tissue mimicking optical phantoms. µa and µs` values were adjusted by incorporating nigrosin and titanium dioxide (TiO2) in the filament extrusion process. A wide range of physiologically relevant optical properties was demonstrated with an average repeatability within 11.5% for µa and 7.71% for µs`. Additionally, a mouse-simulating phantom, which mimicked both the geometry and optical properties of a hairless mouse with an implanted xenograft tumor, was printed using dual extrusion methods. 3D printed tumor optical properties matched the live tumor with less than 3% error at a wavelength of 659 nm. 3D printing with user defined optical properties may provide a viable method for durable optically diffusive phantoms for instrument characterization and calibration.
ISSN:2156-7085
2156-7085
DOI:10.1364/BOE.6.004212