1989Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Physics And Statistics Of Medical Imaging

David G. Brown, Robert F. Wagner

Open publisher page 3 citations

Abstract

Extraordinary progress has been made over the last two decades in the development and dissemination of new medical imaging technologies. The development of computed tomography, positron emission tomography, and magnetic resonance imaging, as well as major innovations to the conventional imaging modalities, have revolutionized medical diagnostic imaging. Despite their many differences, all of these modalities can be viewed from a common perspective: being described in terms of the underlying physical properties imaged, the type of radiation/detection system used to produce the images, and the imaging performance the modality achieves--both in absolute terms and relative to that of a conceptual ideal observer.

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What this paper is about

Extraordinary progress has been made over the last two decades in the development and dissemination of new medical imaging technologies. The development of computed tomography, positron emission tomography, and magnetic resonance imaging, as well as major innovations to the conventional imaging modalities, have revolutionized medical diagnostic imaging. Despite their many differences, all of these modalities can be viewed from a common perspective: being described in terms of the underlying physical properties imaged, the type of radiation/detection system used to produce the images, and the imaging performance the modality achieves--both in absolute terms and relative to that of a conceptual ideal observer.

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Available abstract

Extraordinary progress has been made over the last two decades in the development and dissemination of new medical imaging technologies. The development of computed tomography, positron emission tomography, and magnetic resonance imaging, as well as major innovations to the conventional imaging modalities, have revolutionized medical diagnostic imaging. Despite their many differences, all of these modalities can be viewed from a common perspective: being described in terms of the underlying physical properties imaged, the type of radiation/detection system used to produce the images, and the imaging performance the modality achieves--both in absolute terms and relative to that of a conceptual ideal observer.

Key concepts: Medical imaging, Positron emission tomography, Modalities, Magnetic resonance imaging, Modality (human–computer interaction), Medical physics, Perspective (graphical), Computed tomography

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