论文标题
重建具有光学相干弹力图的分层介质的光学参数
Reconstructing the Optical Parameters of a Layered Medium with Optical Coherence Elastography
论文作者
论文摘要
在这项工作中,我们考虑了从弹性学测量中重建分层介质的光学特性的反问题,其中光学相干断层扫描用作成像方法。特此,我们将样品建模为线性介电介质,以使成像参数由其电敏感性给出,这是频率和深度依赖性参数。除了分层结构(假定至少在小小的照明区域中是有效的),我们允许使用的小散射器,我们认为是随机分布的,与纯均匀层相比,这种情况似乎更现实。然后,我们表明,可以从光学相干断层扫描测量值来实现介质的敏感性(在小散射器上平均之后)的独特重建,以实现介质的不同压缩状态。
In this work we consider the inverse problem of reconstructing the optical properties of a layered medium from an elastography measurement where optical coherence tomography is used as the imaging method. We hereby model the sample as a linear dielectric medium so that the imaging parameter is given by its electric susceptibility, which is a frequency- and depth-dependent parameter. Additionally to the layered structure (assumed to be valid at least in the small illuminated region), we allow for small scatterers which we consider to be randomly distributed, a situation which seems more realistic compared to purely homogeneous layers. We then show that a unique reconstruction of the susceptibility of the medium (after averaging over the small scatterers) can be achieved from optical coherence tomography measurements for different compression states of the medium.