Makita Shuichi, Yamanari Masahiro, Yasuno Yoshiaki
Computational Optics Group in University of Tsukuba, Tsukuba, Ibaraki, Japan.
Opt Express. 2010 Jan 18;18(2):854-76. doi: 10.1364/OE.18.000854.
Phase retardation imaging including local birefringence imaging of biological tissues is described by generalized Jones-matrix optical coherence tomography. The polarization properties of a local tissue can be obtained from two Jones matrices that are measured by backscattered lights from the front and back boundaries of the local tissue. The error in the phase retardation measurement due to background noise is analyzed theoretically, numerically, and experimentally. The minimum detectable phase retardation is estimated from numerical simulations. The theoretical analysis suggests that the measurements with two orthogonal input polarization states have the lowest retardation error. Local birefringence imaging is applied to the human anterior eye chamber and skin in vivo.
包括生物组织局部双折射成像在内的相位延迟成像通过广义琼斯矩阵光学相干断层扫描来描述。局部组织的偏振特性可从两个琼斯矩阵获得,这两个矩阵由局部组织前后边界的背向散射光测量得到。从理论、数值和实验上分析了由背景噪声引起的相位延迟测量误差。通过数值模拟估计了最小可检测相位延迟。理论分析表明,使用两个正交输入偏振态进行测量时延迟误差最低。局部双折射成像被应用于人体眼前房和皮肤的活体成像。