首页> 外文会议>Image Processing (ICIP 2009), 2009 >An adaptive meshless method for spectrally resolved bioluminescence tomography
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An adaptive meshless method for spectrally resolved bioluminescence tomography

机译:光谱分辨生物发光层析成像的自适应无网格方法

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摘要

As a novel optical molecular imaging technology, bioluminescence tomography (BLT) has become a research focus which can localize and quantify an internal light source with the bioluminescent signal on the external surface of a small animal. However, BLT is ill-posed because of complex photon propagation in the biological tissue and noisy boundary measured data. Moreover, the disadvantage of the finite element method (FEM) commonly used in BLT is emerged gradually due to the troublesome mesh discretization. Therefore, an adaptive meshless method is presented to perform a quantitative reconstruction of the bioluminescent source for spectrally resolved BLT in this contribution, which not only can reduce the ill-posedness of BLT effectively through the application of multi-spectral information but also can avoid the time-consuming mesh generation. In addition, the reconstruction can be largely improved using adaptive technology based on a posteriori error estimation. Finally, the performance of this method is evaluated by numerical simulation experiments.
机译:作为一种新颖的光学分子成像技术,生物发光断层扫描(BLT)已成为研究重点,可以利用小动物外表面上的生物发光信号对内部光源进行定位和量化。然而,由于复杂的光子在生物组织中的传播以及边界测量数据的嘈杂,BLT处于不适状态。此外,由于麻烦的网格离散化,逐渐出现了BLT中常用的有限元方法(FEM)的缺点。因此,提出了一种自适应无网格方法,可以对光谱分辨的BLT的生物发光源进行定量重建,这不仅可以通过应用多光谱信息有效地降低BLT的不适性,而且还可以避免耗时的网格生成。另外,可以使用基于后验误差估计的自适应技术极大地改善重建。最后,通过数值模拟实验评估了该方法的性能。

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