Pickering J W, Prahl S A, van Wieringen N, Beek J F, Sterenborg H J, van Gemert M J
Appl Opt. 1993 Feb 1;32(4):399-410. doi: 10.1364/AO.32.000399.
A system is described and evaluated for the simultaneous measurement of the intrinsic optical properties of tissue: the scattering coefficient, the absorption coefficient, and the anisotropy factor. This system synthesizes the theory of two integrating spheres and an intervening scattering sample with the inverse adding-doubling algorithm, which employs the adding-doubling solution of the radiative transfer equation to determine the optical properties from the measurement of the light flux within each sphere and of the unscattered transmission. The optical properties may be determined simultaneously, which allows for measurements to be made while the sample undergoes heating, chemical change, or some otherexternal stimulus. An experimental validation of the system with tissue phantoms resulted in the determination of the optical properties with a < 5% deviation when the optical density was between 1 and 10 and the albedo was between 0.4 and 0.95.
散射系数、吸收系数和各向异性因子。该系统将两个积分球和一个中间散射样本的理论与逆倍增算法相结合,该算法采用辐射传输方程的倍增解,通过测量每个球体内的光通量和未散射透射光来确定光学特性。光学特性可以同时测定,这使得在样品受热、发生化学变化或受到其他外部刺激时也能进行测量。用组织模型对该系统进行的实验验证表明,当光密度在1至10之间且反照率在0.4至0.95之间时,所测定的光学特性偏差小于5%。