All Stories

  1. Fluorescence molecular lifetime tomography
  2. Compressed sensing in medical imaging
  3. Compressed sensing in low-dose CT
  4. Monte Carlo modeling of temporal point spread functions and sensitivity functions for mesoscopic time-resolved fluorescence molecular tomography
  5. ASYMPTOTIC SOURCE FUNCTION APPROXIMATION BASED FLUORESCENCE MOLECULAR TOMOGRAPHY: CURRENT STATUS AND PROSPECTS
  6. Reconstruction of fluorophore absorption and fluorescence lifetime using early photon mesoscopic fluorescence molecular tomography: a phantom study
  7. Monte Carlo based evaluation of the sensitivity functions for tomography
  8. Reconstruction algorithms for few-view computed tomography
  9. Minimizing the Number of Views in Few-View Computed Tomography: a Deep Learning Approach
  10. Monte Carlo Based Estimation of Weight Functions for Few-View Computed Tomography of Strongly Absorbing Objects
  11. Fluorescence molecular tomography for small animal imaging
  12. A new method for separate reconstruction of fluorophore absorption and fluorescence lifetime in time domain: first results of a numerical experiment
  13. Joint image reconstruction and segmentation in few-view tomography
  14. Algebraic reconstruction with TV-regularization and adaptive segmentation
  15. Analytical representation of the sensitivity functions for time-domain diffuse optical tomography
  16. Total variation based reconstruction of scattering inhomogeneities in tissue from time-resolved optical projections
  17. Diffuse optical mammotomography: state-of-the-art and prospects
  18. Few-Views Image Reconstruction with SMART and an Allowance for Contrast Structure Shadows
  19. Calculation of the weighting functions for the reconstruction of absorbing inhomogeneities in tissue by time-resolved optical projections
  20. Theoretical limit of spatial resolution in diffuse optical tomography using a perturbation model
  21. Spatial resolution analysis for time-domain diffuse optical tomography based on a perturbation model
  22. Statistical characteristics of photon distributions in a semi-infinite turbid medium: Analytical expressions and their application to optical tomography
  23. Spatial Resolution Analysis for Few-Views Discrete Tomography Based on MART-AP Algorithm
  24. An a priori information based algorithm for artifact preventive reconstruction in few-view computed tomography
  25. A semi-analytical perturbation model for diffusion tomogram reconstruction from time-resolved optical projections
  26. Diffuse optical mammotomography based on backprojection algorithm with Vainberg-Butterworth filtration
  27. Nonlinear color segmentation of optical diffusion tomograms reconstructed by the photon average trajectory method
  28. Methods for Postprocessing in Single-Step Diffuse Optical Tomography
  29. Algebraic reconstruction and postprocessing in one-step diffuse optical tomography
  30. The photon average trajectory method for One-step diffuse optical tomography: Algebraic reconstruction and postprocessing
  31. Few-view gamma tomography used to monitor scabbing and shear fracture in a spherical iron shell compressed by explosion
  32. Algebraic Reconstruction and Post-Processing in Incomplete Data Computed Tomography: from X-rays to Laser Beams
  33. Space-Varying Iterative Restoration of Diffuse Optical Tomograms Reconstructed by the Photon Average Trajectories Method
  34. Time-domain diffuse optical tomography using analytic statistical characteristics of photon trajectories
  35. Spatial resolution of few-view computed tomography using algebraic reconstruction techniques
  36. <title>Diffuse optical tomogram restoration with spatially variant point spread function</title>
  37. Space-varying restoration of diffuse optical tomograms reconstructed by the filtered backprojection algorithm
  38. <title>High-resolution restoration of diffuse optical images reconstructed by the photon average trajectories method</title>
  39. Application of transform algorithms to high-resolution image reconstruction in optical diffusion tomography of strongly scattering media
  40. The possibility of increasing the spatial resolution in diffusion optical tomography
  41. Application of integral transform algorithms to high-resolution reconstruction of tissue inhomogeneities in medical diffuse optical tomography
  42. <title>Influence of fast reconstruction algorithms on spatial resolution of optical diffuse tomography by photon average trajectories method</title>
  43. Application of the photon average trajectories method to real-time reconstruction of tissue inhomogeneities in diffuse optical tomography of strongly scattering media
  44. <title>Application of photon average trajectories method for separate mapping of absorbing and scattering macroinhomogeneities using time-domain measurements technique</title>
  45. <title>Use of backprojection algorithms of filtered shadows for optical tomography of strongly scattering media</title>
  46. <title>Application of photon average trajectory approach for diffuse tomography reconstruction of strongly scattering objects with complex macroinhomogeneities</title>
  47. <title>Optical diffuse tomography reconstruction using photon average trajectory</title>
  48. A simple method for CT-Scanner calibration against effective photon energy