Open Access
28 January 2016 Factors affecting the normality of channel outputs of channelized model observers: an investigation using realistic myocardial perfusion SPECT images
Fatma Elzahraa A. Elshahaby, Michael Ghaly, Abhinav K. Jha, Eric C. Frey
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Abstract
The channelized Hotelling observer (CHO) uses the first- and second-order statistics of channel outputs under both hypotheses to compute test statistics used in binary classification tasks. If these input data deviate from a multivariate normal (MVN) distribution, the classification performance will be suboptimal compared to an ideal observer operating on the same channel outputs. We conducted a comprehensive investigation to rigorously study the validity of the MVN assumption under various kinds of background and signal variability in a realistic population of phantoms. The study was performed in the context of myocardial perfusion SPECT imaging; anatomical, uptake (intensity), and signal variability were simulated. Quantitative measures and graphical approaches applied to the outputs of each channel were used to investigate the amount and type of deviation from normality. For some types of background and signal variations, the channel outputs, under both hypotheses, were non-normal (i.e., skewed or multimodal). This indicates that, for realistic medical images in cases where there is signal or background variability, the normality of the channel outputs should be evaluated before applying a CHO. Finally, the different degrees of departure from normality of the various channels are explained in terms of violations of the central limit theorem.
CC BY: © The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
Fatma Elzahraa A. Elshahaby, Michael Ghaly, Abhinav K. Jha, and Eric C. Frey "Factors affecting the normality of channel outputs of channelized model observers: an investigation using realistic myocardial perfusion SPECT images," Journal of Medical Imaging 3(1), 015503 (28 January 2016). https://doi.org/10.1117/1.JMI.3.1.015503
Published: 28 January 2016
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CITATIONS
Cited by 8 scholarly publications.
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KEYWORDS
Statistical analysis

Information operations

Medical imaging

Single photon emission computed tomography

Data modeling

Binary data

Performance modeling

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