Biomedical Optics Express · 2021 · 13 citations · 14 references
This work concerns a fluorescence optical projection tomography system for low scattering tissue, like lymph nodes, with angular-domain rejection of highly scattered photons. In this regime, filtered backprojection (FBP) image reconstruction has been shown to provide reasonable quality images, yet here a comparison of image quality between images obtained by FBP and iterative image reconstruction with a Monte Carlo generated system matrix, demonstrate measurable improvements with the iterative method. Through simulated and experimental phantoms, iterative algorithms consistently outperformed FBP in terms of contrast and spatial resolution. Moreover, when projection number was reduced, in order to reduce total imaging time, iterative reconstruction suppressed artifacts that hampered the performance of FBP reconstruction (structural similarity of the reconstructed images with "truth" was improved from 0.15 ± 1.2 × 10<sup>-3</sup> to 0.66 ± 0.02); and although the system matrix was generated for homogenous optical properties, when heterogeneity (62.98 cm<sup>-1</sup> variance in <i>µ<sub>s</sub></i> ) was introduced to simulated phantoms, the results were still comparable (structural similarity homo: 0.67 ± 0.02 vs hetero: 0.66 ± 0.02).
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Image quality assessment: from error visibility to structural similarity
Zhou Wang, Alan C. Bovik, Hamid R. Sheikh et al. · IEEE Transactions on Image Processing · 2004 · 54.1K citations
Hamid Dehghani, Matthew Eames, Phaneendra K. Yalavarthy et al. · Communications in Numerical Methods in Engineering · 2008 · 717 citations · Full text
Dominik Marti, Rikke N. Aasbjerg, Peter E. Andersen et al. · Journal of Biomedical Optics · 2018 · 137 citations · Full text
Numerical Analysis, Radiative Transfer Equation, Engineering +19