| Literature DB >> 19065170 |
Chenghu Qin1, Jie Tian, Xin Yang, Kai Liu, Guorui Yan, Jinchao Feng, Yujie Lv, Min Xu.
Abstract
As an important small animal imaging technique, optical imaging has attracted increasing attention in recent years. However, the photon propagation process is extremely complicated for highly scattering property of the biological tissue. Furthermore, the light transport simulation in tissue has a significant influence on inverse source reconstruction. In this contribution, we present two Galerkin-based meshless methods (GBMM) to determine the light exitance on the surface of the diffusive tissue. The two methods are both based on moving least squares (MLS) approximation which requires only a series of nodes in the region of interest, so complicated meshing task can be avoided compared with the finite element method (FEM). Moreover, MLS shape functions are further modified to satisfy the delta function property in one method, which can simplify the processing of boundary conditions in comparison with the other. Finally, the performance of the proposed methods is demonstrated with numerical and physical phantom experiments. (c) 2008 Optical Society of AmericaEntities:
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Year: 2008 PMID: 19065170 DOI: 10.1364/oe.16.020317
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894