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Determining the optical properties of a gelatin?TiO2 phantom at 780 nm

机译:确定明胶TiO 2 体模在780 nm处的光学性质

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Tissue phantoms play a central role in validating biomedical imaging techniques. Here we employ a series of methods that aim to fully determine the optical properties, i.e., the refractive index n, absorption coefficient μa, transport mean free path ?*, and scattering coefficient μs of a TiO2 in gelatin phantom intended for use in optoacoustic imaging. For the determination of the key parameters μa and ?*, we employ a variant of time of flight measurements, where fiber optodes are immersed into the phantom to minimize the influence of boundaries. The robustness of the method was verified with Monte Carlo simulations, where the experimentally obtained values served as input parameters for the simulations. The excellent agreement between simulations and experiments confirmed the reliability of the results. The parameters determined at 780?nm are n=1.359(±0.002), μ′ s=1/?*=0.22(±0.02)?mm-1, μa=?0.0053(+0.0006-0.0003)?mm-1, and μs=2.86(±0.04)?mm-1.?The asymmetry parameter g obtained from the parameters ?* and μ′ s is 0.93, which indicates that the scattering entities are not bare TiO2 particles but large sparse clusters. The interaction between the scattering particles and the gelatin matrix should be taken into account when developing such phantoms.
机译:组织体模在验证生物医学成像技术中起着核心作用。在这里,我们采用了一系列方法,旨在完全确定打算用于光声成像的明胶体模中TiO2的光学特性,即折射率n,吸收系数μa,传输平均自由程σ*和散射系数μs。 。为了确定关键参数μa和?*,我们采用了不同的飞行时间测量方法,其中将光纤光电二极管浸入模型中以最大程度地减小边界的影响。该方法的鲁棒性已通过蒙特卡洛模拟进行了验证,其中以实验获得的值作为模拟的输入参数。模拟与实验之间的出色一致性证实了结果的可靠性。在780?nm处确定的参数为n = 1.359(±0.002),μ's = 1 /?* = 0.22(±0.02)?mm-1,μa=?0.0053(+ 0.0006-0.0003)?mm-1,并且,μs= 2.86(±0.04)≤mm-1。由参数α*和μ′s获得的非对称性参数g为0.93,这表明散射体不是TiO 2裸粒子而是稀疏的大簇。产生这种体模时,应考虑到散射颗粒与明胶基质之间的相互作用。

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