Hutchinson C L, Lakowicz J R, Sevick-Muraca E M
Purdue University, School of Chemical Engineering, West Lafayette, Indiana 47907, USA.
Biophys J. 1995 Apr;68(4):1574-82. doi: 10.1016/S0006-3495(95)80330-9.
We have numerically solved the photon diffusion equation to predict the distribution of light in a tissue model system with a uniform concentration of fluorophore. Our results show that time-dependent measurements of light propagation can be used to monitor the fluorescent lifetimes of a uniformly distributed fluorophore in tissues. With proper referencing, frequency-domain measurements of phase-shift, theta, may allow quantitation of fluorescent lifetimes, tau, independent of changes in the local absorption and scattering properties. These results point to a new approach for noninvasive diagnostic monitoring through quantitation of fluorescent lifetime, tau, when the lifetime of the fluorophore is comparable with photon migration times.
我们通过数值求解光子扩散方程,来预测荧光团浓度均匀的组织模型系统中的光分布。我们的结果表明,光传播的时间相关测量可用于监测组织中均匀分布的荧光团的荧光寿命。通过适当的参考,相移θ的频域测量可能允许对荧光寿命τ进行定量,而与局部吸收和散射特性的变化无关。当荧光团的寿命与光子迁移时间相当时,这些结果指出了一种通过荧光寿命τ定量进行无创诊断监测的新方法。