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Quantum Noise Measurements for Fourier Multiaperture Emission Tomography

The mean and variance of an image reconstructed by Fourier multiaperture emission tomography are estimated by a physical experiment and by simulations. Results correspond closely to those obtained from a stochastic model of the noise process. A new scheme to enhance the statistical performance is pr...

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Published in:IEEE transactions on medical imaging 1985-01, Vol.4 (3), p.129-133
Main Authors: Wang, Peter K. H., Joy, Michael L. G.
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Language:English
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Joy, Michael L. G.
description The mean and variance of an image reconstructed by Fourier multiaperture emission tomography are estimated by a physical experiment and by simulations. Results correspond closely to those obtained from a stochastic model of the noise process. A new scheme to enhance the statistical performance is proposed which improves the signal-to-noise ratio by 35 percent.
doi_str_mv 10.1109/TMI.1985.4307710
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subjects Apertures
Biological and medical sciences
Biomedical engineering
Cameras
Detectors
Image reconstruction
Investigative techniques, diagnostic techniques (general aspects)
Medical sciences
Medical simulation
Miscellaneous. Technology
Noise measurement
Object detection
Radiodiagnosis. Nmr imagery. Nmr spectrometry
Surface reconstruction
Tomography
title Quantum Noise Measurements for Fourier Multiaperture Emission Tomography
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