Literature DB >> 27576245

Cone Beam X-ray Luminescence Computed Tomography Based on Bayesian Method.

Guanglei Zhang, Fei Liu, Jie Liu, Jianwen Luo, Yaoqin Xie, Jing Bai, Lei Xing.   

Abstract

X-ray luminescence computed tomography (XLCT), which aims to achieve molecular and functional imaging by X-rays, has recently been proposed as a new imaging modality. Combining the principles of X-ray excitation of luminescence-based probes and optical signal detection, XLCT naturally fuses functional and anatomical images and provides complementary information for a wide range of applications in biomedical research. In order to improve the data acquisition efficiency of previously developed narrow-beam XLCT, a cone beam XLCT (CB-XLCT) mode is adopted here to take advantage of the useful geometric features of cone beam excitation. Practically, a major hurdle in using cone beam X-ray for XLCT is that the inverse problem here is seriously ill-conditioned, hindering us to achieve good image quality. In this paper, we propose a novel Bayesian method to tackle the bottleneck in CB-XLCT reconstruction. The method utilizes a local regularization strategy based on Gaussian Markov random field to mitigate the ill-conditioness of CB-XLCT. An alternating optimization scheme is then used to automatically calculate all the unknown hyperparameters while an iterative coordinate descent algorithm is adopted to reconstruct the image with a voxel-based closed-form solution. Results of numerical simulations and mouse experiments show that the self-adaptive Bayesian method significantly improves the CB-XLCT image quality as compared with conventional methods.

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Year:  2016        PMID: 27576245      PMCID: PMC5391999          DOI: 10.1109/TMI.2016.2603843

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  33 in total

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9.  X-ray luminescence optical tomography imaging: experimental studies.

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4.  Resolving adjacent nanophosphors of different concentrations by excitation-based cone-beam X-ray luminescence tomography.

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  7 in total

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