Arias Augusto, Anastasopoulou Maria, Gorpas Dimitris, Ntziachristos Vasilis
Chair of Biological Imaging at the Central Institute for Translational Cancer Research (TranslaTUM), School of Medicine, Technical University of Munich, Munich, 81675, Germany.
Institute of Biological and Medical Imaging, Helmholtz Zentrum München, Neuherberg, 85764, Germany.
Biomed Opt Express. 2023 Sep 27;14(10):5499-5511. doi: 10.1364/BOE.496599. eCollection 2023 Oct 1.
The total diffuse reflectance and the effective attenuation coefficient of an optically diffuse medium map uniquely onto its absorption and reduced scattering coefficients. Using this premise, we developed a methodology where and the slope of the logarithmic spatially resolved reflectance, a quantity related to , are the inputs of a look-up table to correct the dependence of fluorescent signals on the media's optical properties. This methodology does not require an estimation of the medium's optical property, avoiding elaborate simulations and their errors to offer accurate and fast corrections. The experimental demonstration of our method yielded a mean relative error in fluorophore concentrations of less than 4% over a wide range of optical property variations. We discuss how the method developed can be employed to improve image fidelity and fluorochrome quantification in fluorescence molecular imaging clinical applications.
光学漫射介质的总漫反射率和有效衰减系数唯一地映射到其吸收系数和约化散射系数上。基于这一前提,我们开发了一种方法,其中对数空间分辨反射率的斜率(一个与相关的量)作为查找表的输入,以校正荧光信号对介质光学特性的依赖性。该方法不需要估计介质的光学特性,避免了复杂模拟及其误差,从而提供准确、快速的校正。我们方法的实验证明在广泛的光学特性变化范围内,荧光团浓度的平均相对误差小于4%。我们讨论了所开发的方法如何用于提高荧光分子成像临床应用中的图像保真度和荧光染料定量。