Liebert Adam, Wabnitz Heidrun, Grosenick Dirk, Möller Michael, Macdonald Rainer, Rinneberg Herbert
Physikalisch-Technische Bundesanstalt, Abbestrasse 2-12, 10587 Berlin, Germany.
Appl Opt. 2003 Oct 1;42(28):5785-92. doi: 10.1364/ao.42.005785.
A novel method for the determination of the optical properties of tissue from time-domain measurements is presented. The data analysis is based on the evaluation of the first moment and the second centralized moment, i.e., the mean time of flight and the variance of the measured distribution of times of flight (DTOF) of photons injected by short (picosecond) laser pulses. Analytical expressions are derived for calculation of absorption and of reduced scattering coefficients from these moments by application of diffusion theory for infinite and semi-infinite homogeneous media. The proposed method was tested on experimental data obtained with phantoms, and results for absorption and reduced scattering coefficients obtained by the proposed method are compared with those obtained by fitting of the same data with analytical solutions of the diffusion equation. Furthermore, the accuracy of the moment analysis was investigated for a range of integration limits of the DTOF. The moment analysis may serve as a comparatively fast method for evaluating optical properties with sufficient accuracy and can be used, e.g., for on-line monitoring of optical properties of biological tissue.
提出了一种从时域测量确定组织光学特性的新方法。数据分析基于对一阶矩和二阶中心矩的评估,即光子通过短(皮秒)激光脉冲注入后飞行时间的平均时间和测量的飞行时间分布(DTOF)的方差。通过将扩散理论应用于无限和半无限均匀介质,从这些矩推导出用于计算吸收系数和约化散射系数的解析表达式。在所获得的模拟数据上测试了所提出的方法,并将通过该方法获得的吸收系数和约化散射系数的结果与通过用扩散方程的解析解拟合相同数据所获得的结果进行比较。此外,针对DTOF的一系列积分极限研究了矩分析的准确性。矩分析可以作为一种具有足够精度评估光学特性的相对快速的方法,并且可用于例如生物组织光学特性的在线监测。