Wu J
George R. Harrison Spectroscopy Laboratory, Massachusetts Institute of Technology, Cambridge 02139, USA.
J Opt Soc Am A Opt Image Sci Vis. 1997 Jan;14(1):280-7. doi: 10.1364/josaa.14.000280.
To model the effect of a tissue-air boundary on time-resolved optical measurements, a convolution picture is presented based on the photon migration picture. It is demonstrated that the boundary conditions (either index matched or index mismatched) can be formulated as a spatiotemporal convolution of two terms, with the first being identical to the solution in the infinite medium and the second being independent of the original light source. The conditions under which the spatial convolution part in the second term becomes negligible are also determined thus permitting the complete separation of the two terms by use of a temporal Laplace or Fourier transformation. This result is promising, since it, suggests a method of removing the effect of the boundary conditions in the applications of time-resolved optical imaging (in both the time domain and the frequency domain) in biological tissues.
为了模拟组织 - 空气边界对时间分辨光学测量的影响,基于光子迁移图像给出了一种卷积图像。结果表明,边界条件(匹配或失配折射率)可表示为两项的时空卷积,第一项与无限介质中的解相同,第二项与原始光源无关。还确定了第二项中空间卷积部分可忽略不计的条件,从而允许通过时间拉普拉斯或傅里叶变换完全分离这两项。这一结果很有前景,因为它提出了一种在生物组织的时间分辨光学成像(时域和频域)应用中消除边界条件影响的方法。