Published 2010 | Version v1
Journal article

A Monte Carlo-based model for simulation of digital chest tomo-synthesis

  • 1. Radiation Physics, Div. of Radiological Sciences, Dept. of Medicine and Health Sciences, Faculty of Health Sciences and Center for Medical Image Science and Visualization CMIV, Linkoeping Univ., SE-58185 Linkoe ping (Sweden)
  • 2. NCCPM, Royal Surrey County Hospital, Guildford GU2 7XX (United Kingdom)
  • 3. Dept. of Medical Physics and Biomedical Engineering, Sahlgrenska Univ. Hospital, SE-413 45 Gothenburg (Sweden)
  • 4. Dept. of Radiation Physics, Univ. of Gothenburg, SE-413 45 Gothenburg (Sweden)

Description

The aim of this work was to calculate synthetic digital chest tomo-synthesis projections using a computer simulation model based on the Monte Carlo method. An anthropomorphic chest phantom was scanned in a computed tomography scanner, segmented and included in the computer model to allow for simulation of realistic high-resolution X-ray images. The input parameters to the model were adapted to correspond to the VolumeRAD chest tomo-synthesis system from GE Healthcare. Sixty tomo-synthesis projections were calculated with projection angles ranging from + 15 to -15 deg. The images from primary photons were calculated using an analytical model of the anti-scatter grid and a pre-calculated detector response function. The contributions from scattered photons were calculated using an in-house Monte Carlo-based model employing a number of variance reduction techniques such as the collision density estimator. Tomographic section images were reconstructed by transferring the simulated projections into the VolumeRAD system. The reconstruction was performed for three types of images using: (i) noise-free primary projections, (ii) primary projections including contributions from scattered photons and (iii) projections as in (ii) with added correlated noise. The simulated section images were compared with corresponding section images from projections taken with the real, anthropomorphic phantom from which the digital voxel phantom was originally created. The present article describes a work in progress aiming towards developing a model intended for optimisation of chest tomo-synthesis, allowing for simulation of both existing and future chest tomo-synthesis systems. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1093/rpd/ncq079

Additional details

Identifiers

Publishing Information

Journal Title
Radiation Protection Dosimetry
Journal Volume
139
Journal Issue
1-3
Journal Page Range
p. 159-163
ISSN
0144-8420

Conference

Title
3. Malmoe Conference on Medical Imaging - Optimisation in X-ray and molecular imaging
Dates
25-27 Jun 2009
Place
Malmoe (Sweden)

Optional Information

Notes
12 refs