Elbau Peter, Mindrinos Leonidas, Scherzer Otmar
Computational Science Center University of Vienna Oskar-Morgenstern-Platz 1 Vienna A-1090 Austria.
Computational Science Center University of Vienna Oskar-Morgenstern-Platz 1 Vienna A-1090 Austria; Johann Radon Institute for Computational and Applied Mathematics (RICAM) Altenbergerstraße 69 Linz A-4040 Austria.
Math Methods Appl Sci. 2017 Feb;40(3):505-522. doi: 10.1002/mma.3915. Epub 2016 Mar 17.
Optical coherence tomography (OCT) and photoacoustic tomography are emerging non-invasive biological and medical imaging techniques. It is a recent trend in experimental science to design experiments that perform photoacoustic tomography and OCT imaging at once. In this paper, we present a mathematical model describing the dual experiment. Because OCT is mathematically modelled by Maxwell's equations or some simplifications of it, whereas the light propagation in quantitative photoacoustics is modelled by (simplifications of) the radiative transfer equation, the first step in the derivation of a mathematical model of the dual experiment is to obtain a unified mathematical description, which in our case are Maxwell's equations. As a by-product, we therefore derive a new mathematical model of photoacoustic tomography based on Maxwell's equations. It is well known by now that without additional assumptions on the medium, it is not possible to uniquely reconstruct all optical parameters from either one of these modalities alone. We show that in the combined approach, one has additional information, compared with a single modality, and the inverse problem of reconstruction of the optical parameters becomes feasible. © 2016 The Authors. Published by John Wiley & Sons Ltd.
光学相干断层扫描(OCT)和光声断层扫描是新兴的非侵入性生物和医学成像技术。设计同时进行光声断层扫描和OCT成像的实验是实验科学的最新趋势。在本文中,我们提出了一个描述双重实验的数学模型。由于OCT在数学上是由麦克斯韦方程组或其某些简化形式建模的,而定量光声中的光传播是由辐射传输方程(或其简化形式)建模的,因此推导双重实验数学模型的第一步是获得一个统一的数学描述,在我们的例子中就是麦克斯韦方程组。因此,作为副产品,我们基于麦克斯韦方程组推导了一个新的光声断层扫描数学模型。现在众所周知,在没有对介质的额外假设的情况下,仅从这些模态中的任何一种都不可能唯一地重建所有光学参数。我们表明,在组合方法中,与单一模态相比,有额外的信息,并且光学参数重建的逆问题变得可行。© 2016作者。由约翰·威利父子有限公司出版。