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Quantitative Evaluation of Bioluminescence Imaging Based on Radiative Transfer Equation
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作者 KAN Xing-xing CHEN Chun-xiao GONG Rong-fang 《Chinese Journal of Biomedical Engineering(English Edition)》 CSCD 2016年第1期39-46,共8页
B iolum inescence in aghg is a khd ofem erghg detection technology at cellular, m olecu lar and genetic level. The most popular b io lum m inescence in aghg model is diffusion approxin ation (DA). However, because ... B iolum inescence in aghg is a khd ofem erghg detection technology at cellular, m olecu lar and genetic level. The most popular b io lum m inescence in aghg model is diffusion approxin ation (DA). However, because of the ill-posedness of the D A -based hverse problem and the instability of reconstruction algorithm s, the location accuracy of the reconstucted sources is low. Radiative transfer equation (RTE), which considers the direction of the photon m igration and the effect of absorption and scattering in tissues, can accurately express the transmission ofbiolum hescent photns through the tissues. In this paper, we studied the biolum hescence inaging based on the RTE. 2D sinuiations were performed, and quantitative evaluation was given by the absolute source position error, the relative source area error and the m h in um bound hg box. The resu Its of the experin ent showed that the in aging quality based on R TE was beer than thatone based on D A. 展开更多
关键词 biolum inescence in aghg radiative transfer equation disconthuous Galerkinmethod forward problem inverse problem
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