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Spatial pattern characterization of linear polarization-sensitive backscattering Mueller matrix elements of human serum albumin sphere suspension

机译:人血清白蛋白球悬浮液的线性极化敏感反向散射穆勒矩阵元素的空间图案表征

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摘要

Human serum albumin (HSA) nanometer or micron particles represent promising drug-carrier systems. The azimuthal and radial variations of a linear polarization-sensitive backscattering Mueller matrix were experimentally studied in two cases: the scattering particle was smaller or larger in size to the probing wavelength of 780 nm. The results show that the twofold and fourfold structures are characteristic of small particle size suspension, whereas the eightfold structure is characteristic of large particle size suspension. Moreover, for both particle size suspensions, the element patterns have strong radial dependence when the suspension concentration and the incident power of laser change. In addition, for both particle size suspensions, the rotational symmetry of each element is lost in the case of oblique incidence but the multifold structure is maintained. Some suggestions for applications of Mueller matrix imaging in biomedical optics are provided.
机译:人血清白蛋白(HSA)纳米或微米颗粒代表了有前途的药物载体系统。在两种情况下,通过实验研究了线性偏振敏感背向散射Mueller矩阵的方位角和径向变化:散射粒子的大小在780 nm的探测波长上较小或较大。结果表明,两倍和四倍结构是小粒径悬浮液的特征,而八倍结构是大粒径悬浮液的特征。而且,对于两种粒径的悬浮液,当悬浮液浓度和激光的入射功率发生变化时,元素图案都具有很强的径向依赖性。另外,对于两种粒径的悬浮液,在倾斜入射的情况下失去了每个元素的旋转对称性,但是保持了多重结构。提供了一些对Mueller矩阵成像在生物医学光学中的应用的建议。

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