Chang Ching-Min, Lo Yu-Lung, Tran Nghia-Khanh, Chang Yu-Jen
Appl Opt. 2018 Mar 20;57(9):2121-2127. doi: 10.1364/AO.57.002121.
A method is proposed for characterizing the optical properties of articular cartilage sliced from a pig's thighbone using a Stokes-Mueller polarimetry technique. The principal axis angle, phase retardance, optical rotation angle, circular diattenuation, diattenuation axis angle, linear diattenuation, and depolarization index properties of the cartilage sample are all decoupled in the proposed analytical model. Consequently, the accuracy and robustness of the extracted results are improved. The glucose concentration, collagen distribution, and scattering properties of samples from various depths of the articular cartilage are systematically explored via an inspection of the related parameters. The results show that the glucose concentration and scattering effect are both enhanced in the superficial region of the cartilage. By contrast, the collagen density increases with an increasing sample depth.
提出了一种使用斯托克斯-穆勒偏振技术表征从猪大腿骨切下的关节软骨光学特性的方法。在所提出的分析模型中,软骨样品的主轴角、相位延迟、旋光角、圆二向色性、二向色性轴角、线性二向色性和去偏振指数特性都被解耦。因此,提高了提取结果的准确性和稳健性。通过检查相关参数,系统地探索了关节软骨不同深度样品的葡萄糖浓度、胶原蛋白分布和散射特性。结果表明,软骨表层区域的葡萄糖浓度和散射效应均增强。相比之下,胶原蛋白密度随样品深度增加而增加。