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Optical phantoms of varying geometry based on thin building blocks with controlled optical properties

机译:基于具有受控光学特性的薄构件,可改变几何体的光学模型

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摘要

Current innovations in optical imaging, measurement techniques, and data analysis algorithms express the need for reliable testing and comparison methods. We present the design and characterization of silicone elastomer-based optical phantoms. Absorption is included by adding a green dye and scattering by adding TiO2 or SiO2 particles. Optical coherence tomography measurements demonstrate a linear dependence of the attenuation coefficient with scatterer concentration in the absence of absorbers. Optical transmission spectroscopy of the nonscattering absorbing phantoms shows a linear concentration dependent absorption coefficient. Both types of samples are stable over a period of 6 months. Confocal microscopy of the samples demonstrates a homogeneous distribution of the scatterers, albeit with some clustering. Based on layers with thicknesses as small as 50 mu m, we make multifaceted structures resembling flow channels, (wavy) skin-like structures, and a layered and curved phantom resembling the human retina. Finally, we demonstrate the ability to incorporate gold nanoparticles within the phantoms. In conclusion, our phantoms are easy to make, are based on affordable materials, exhibit well-defined and controllable thickness, refractive index, absorption, and scattering coefficients, are homogeneous, and allow the incorporation of novel types of nanoparticle contrast agents. We believe our phantoms fulfill many of the requirements for an "ideal" tissue phantom, and will be particularly suited for novel optical coherence tomography applications. (C) 2010 Society or Photo-Optical Instrumentation Engineers. [DOI: 10.1117/1.3369003]
机译:光学成像,测量技术和数据分析算法的最新创新表明,需要可靠的测试和比较方法。我们介绍了基于有机硅弹性体的光学体模的设计和表征。通过添加绿色染料来吸收吸收,并通过添加TiO2或SiO2颗粒来散射。光学相干断层扫描测量结果表明,在没有吸收体的情况下,衰减系数与散射体浓度呈线性关系。非散射吸收体模的光学透射光谱显示线性浓度依赖性吸收系数。两种类型的样品在6个月内都保持稳定。样品的共聚焦显微镜显示了散射体的均匀分布,尽管有一些聚集。基于厚度薄至50微米的层,我们制作了类似于流动通道的多面结构,(波浪状)皮肤状结构,以及类似于人的视网膜的层状弯曲体模。最后,我们证明了将金纳米粒子结合到幻象中的能力。总而言之,我们的幻影易于制造,基于可负担的材料,具有良好定义和可控制的厚度,折射率,吸收率和散射系数,具有均质性,并允许掺入新型纳米粒子造影剂。我们相信我们的人体模型可以满足“理想”组织人体模型的许多要求,并且特别适合于新型光学相干层析成像应用。 (C)2010年学会或光电仪器工程师。 [DOI:10.1117 / 1.3369003]

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