Design and characterization of color printed polyurethane films as biomedical phantom layers

Author:

Morsink Claudia F.1,Dam-Vervloet Alida J.12,Krommendijk Marleen E.1ORCID,Kaya Michael1,Cuartas-Vélez Carlos1,Knop Tom1ORCID,Francis Kalloor Joseph1ORCID,Bosschaart Nienke1

Affiliation:

1. University of Twente

2. Isala Hospital

Abstract

We propose a new, user-friendly and accessible approach for fabricating thin phantoms with controllable absorption properties in magnitude, spectral shape, and spatial distribution. We utilize a standard office laser color printer to print on polyurethane thin films (40 – 60 μm), commonly available as medical film dressings and ultrasound probe covers. We demonstrate that the optical attenuation and absorption of the printed films correlate linearly with the printer input settings (opacity), which facilitates a systematic phantom design. The optical and acoustic properties of these polyurethane films are similar to biological tissue. We argue that these thin phantoms are applicable to a wide range of biomedical applications. Here, we introduce two potential applications: (1) homogeneous epidermal melanin phantoms and (2) spatially resolved absorbers for photoacoustic imaging. We characterize the thin phantoms in terms of optical properties, thickness, microscopic structure, and reproducibility of the printing process.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

European Research Council

Netherlands Organ-on-Chip Initiative

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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