Soni Jalpa, Purwar Harsh, Lakhotia Harshit, Chandel Shubham, Banerjee Chitram, Kumar Uday, Ghosh Nirmalya
Department of Physical Sciences, IISER - Kolkata, Mohanpur Campus, Nadia, 741252, India.
Opt Express. 2013 Jul 1;21(13):15475-89. doi: 10.1364/OE.21.015475.
A novel spectroscopic Mueller matrix system has been developed and explored for both fluorescence and elastic scattering polarimetric measurements from biological tissues. The 4 × 4 Mueller matrix measurement strategy is based on sixteen spectrally resolved (λ = 400 - 800 nm) measurements performed by sequentially generating and analyzing four elliptical polarization states. Eigenvalue calibration of the system ensured high accuracy of Mueller matrix measurement over a broad wavelength range, either for forward or backscattering geometry. The system was explored for quantitative fluorescence and elastic scattering spectroscopic polarimetric studies on normal and precancerous tissue sections from human uterine cervix. The fluorescence spectroscopic Mueller matrices yielded an interesting diattenuation parameter, exhibiting differences between normal and precancerous tissues.
一种新型的光谱穆勒矩阵系统已被开发并用于对生物组织进行荧光和弹性散射偏振测量。4×4穆勒矩阵测量策略基于通过依次生成和分析四个椭圆偏振态进行的十六次光谱分辨(λ = 400 - 800 nm)测量。系统的本征值校准确保了在宽波长范围内穆勒矩阵测量的高精度,无论是前向还是后向散射几何结构。该系统用于对人子宫颈正常和癌前组织切片进行定量荧光和弹性散射光谱偏振研究。荧光光谱穆勒矩阵产生了一个有趣的二向色性参数,显示出正常组织和癌前组织之间的差异。