DocumentCode :
1222828
Title :
Computational engine for development of complex cascaded models of signal and noise in X-ray imaging systems
Author :
Sattarivand, Mike ; Cunningham, I.A.
Author_Institution :
Robarts Res. Inst., London, Ont., Canada
Volume :
24
Issue :
2
fYear :
2005
Firstpage :
211
Lastpage :
222
Abstract :
The detective quantum efficiency (DQE) is generally accepted as the primary metric of signal-to-noise performance in medical X-ray imaging systems. Simple theoretical models of the Wiener noise power spectrum (NPS) and DQE can be developed using a cascaded-systems approach to assess particular system designs and establish operational benchmarks. However, the cascaded approach is often impractical for the development of comprehensive models due to the complexity and extremely large number of algebraic terms that must be manipulated to describe signal and noise transfer. We have developed a computational engine that overcomes this limitation. Using a predefined library of elementary physical processes, complex models are assembled and input-output relationships established using a graphical interface. A novel recursive algorithm is described that allows the signal and noise analyses of models with arbitrary complexity including the use of multiple parallel cascades. Symbolic mathematics is used to develop analytic expressions for the NPS and DQE. The algorithm is validated by manual calculation for simple models and by Monte Carlo calculation for complex models. We believe our approach enables the use of complex cascaded models to design better detectors with improved image quality.
Keywords :
Monte Carlo methods; cascade systems; diagnostic radiography; graphical user interfaces; medical image processing; symbol manipulation; Wiener noise power spectrum; complex cascaded models; computational engine; detective quantum efficiency; graphical interface; improved image quality; medical X-ray imaging systems; multiple parallel cascades; recursive algorithm; signal-to-noise performance; symbolic mathematics; Assembly; Biomedical imaging; Engines; Libraries; Medical signal detection; Power system modeling; Signal analysis; X-ray detection; X-ray detectors; X-ray imaging; Cascaded models; Monte Carlo; detective quantum efficiency (DQE); modulation transfer function (MTF); noise power spectrum (NPS); Computer Simulation; Equipment Design; Equipment Failure Analysis; Models, Statistical; Radiographic Image Interpretation, Computer-Assisted; Radiography; Reproducibility of Results; Scattering, Radiation; Sensitivity and Specificity; Stochastic Processes;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2004.839680
Filename :
1388570
Link To Document :
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