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Design and Fabrication of Solid Phantoms for NIR Water Fraction Studies

机译:尼尔水分馏分研究的固体幽灵设计和制造

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Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performance of diffuse optical devices. In this paper we report the development of a poly(dimethylsiloxane) (PDMS) tissue phantom that mimics the spectral characteristics of tissue water. We have developed these phantoms to mimic different water fractions in tissue for testing new devices within the context of clinical applications such as burn wound triage. Compared to liquid phantoms, PDMS phantoms are easier to transport and use, and have a longer usable life than gelatin based phantoms. The pthalocyanine dye 9606 was used to provide an absorption feature of in the vicinity of 970 nm. Scattering properties were independently determined by adding titanium dioxide powder to obtain reduced scattering coefficients similar to that of tissue in the near infrared. Phantom properties were characterized using the techniques of inverse adding doubling and spatial frequency domain imaging. Results presented here demonstrate that we can fabricate solid phantoms that can be used to simulate different water fractions.
机译:组织模拟幽灵提供了一种有价值的平台,用于定量评估漫反射光学器件的性能。在本文中,我们报告了模拟组织水的光谱特性的聚(二甲基硅氧烷)(PDMS)组织幻影的开发。我们已经开发了这些幽灵,以模仿组织中的不同水分,以测试临床应用中的临床应用中的新装置,例如烧伤卷绕分流。与液体幽灵相比,PDMS幻影更容易运输和使用,并且具有比明胶的幽灵的更长的使用寿命。戊氰胺染料9606用于提供970nm附近的吸收特征。通过加入二氧化钛粉末以获得与近红外线中的组织类似的散射系数的降低的散射系数来独立地确定散射性能。使用逆添加倍增和空间频域成像的技术来表征幻像特性。此处提出的结果表明,我们可以制造可用于模拟不同水分的固体幽灵。

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