"The structure and exposition are very good. Each chapter has a one-page summary that really does capture all the key points of the chapter. There are good explanations of all the scanning methods and how the physics works and how they are implemented. The book gives several alternate algorithms for processing the data, and gives good explanations of their strengths and weaknesses." MAA Reviews
Larry Zeng, Ph.D. (in Electrical Engineering, University of New Mexico), Professor of Computer Science, Utah Valley University; Adjunct Professor of Radiology and Imaging Sciences, University of Utah Valley University; IEEE Fellow;
_Main research focus: Medical Image Reconstruction.
__Noise weighting with an exponent for transmission CT, Biomedical Physics & Engineering Express.
__Does noise weighting matter in CT iterative reconstruction? IEEE Transactions on Radiation and Plasma Medical Sciences.
__A fast method to emulate an iterative POCS image reconstruction algorithm, Med. Phys.
__Fourier-domain analysis of the iterative Landweber algorithm, IEEE Transactions on Radiation and Plasma Medical Sciences.
__Estimation of the initial image's contributions to the iterative Landweber reconstruction, IEEE Transactions on Radiation and Plasma Medical Sciences.
__Maximum-likelihood expectation-maximization algorithm vs. windowed filtered backprojection algorithm: A case study, Journal of Nuclear Medicine Technology.
__Filtered backprojection implementation of the immediately-after-backprojection filtering, Biomedical Physics & Engineering Express.
__Emission expectation-maximization look-alike algorithms for x-ray CT and other applications, Medical Physics.
__Estimation of the optimal iteration number for minimal image discrepancy, IEEE Transactions on Radiation and Plasma Medical Sciences.
__Image noise covariance can be adjusted by a noise weighted filtered backprojection algorithm, IEEE Transactions on Radiation and Plasma Medical Sciences.
__Modification of Green's one-step-late algorithm for attenuated emission data, Biomed. Phys. Eng. Express.
__Counter examples for unmatched projector/backprojector in an iterative algorithm, Chinese Journal of Academic Radiology.
__Real-time selection of iteration number, Biomedical Physics & Engineering Express.
__Extension of emission expectation maximization lookalike algorithms to Bayesian algorithms, Visual Computing for Industry, Biomedicine, and Art.
__Sparse-view tomography via displacement function interpolation, Visual Computing for Industry, Biomedicine, and Art.
__Time-of-flight PET reconstruction: Two-dimensional case, Visual Computing for Industry, Biomedicine, and Art.
__Time-of-flight PET reconstruction: Three-dimensional case, Visual Computing for Industry, Biomedicine, and Art.
__Non-iterative image reconstruction from sparse magnetic resonance imaging radial data without priors, Visual Computing for Industry, Biomedicine, and Art.
__Poisson-noise weighted filter for time-of-flight positron emission tomography, Visual Computing for Industry, Biomedicine, and Art.
__Pre-filter that incorporates the noise model, Visual Computing for Industry, Biomedicine, and Art.
__Projection-domain iteration to estimate unreliable measurements. Visual Computing for Industry, Biomedicine, and Art.
__Iterative versus non-iterative image reconstruction methods for sparse MRI, Journal of Radiology and Imaging.
__Fast filtered back projection algorithm for low-dose computed tomography, Journal of Radiology and Imaging.
__One-view time-of-flight positron emission tomography, IEEETrans. Radiation and Plasma Medical Sciences.
__Analytic continuation and incomplete data tomography, Journal of R