Scinovex
articleTop 10% cited

Energy-selective reconstructions in X-ray computerised tomography

Physics in Medicine and Biology · 1976 · Vol. 21(5) · pp. 733–744
R. E. AlvarezAlbert Macovski

Abstract

All X-ray computerized tomography systems that are available or proposed base their reconstructions on measurements that integrate over energy. X-ray tubes produce a broad spectrum of photon energies and a great deal of information can be derived by measuring changes in the transmitted spectrum. We show that for any material, complete energy spectral information may be summarized by a few constants which are independent of energy. A technique is presented which uses simple, low-resolution, energy spectrum measurements and conventional computerized tomography techniques to calculate these constants at every point within a cross-section of an object. For comparable accuracy, patient dose is shown to be approximately the same as that produced by conventional systems. Possible uses of energy spectral information for diagnosis are presented.

Advanced X-ray and CT ImagingMedical Imaging Techniques and ApplicationsRadiation Dose and ImagingTomographyEnergy (signal processing)Resolution (logic)OpticsPhysicsX-rayPhotonPhoton energySpectrum (functional analysis)Computational physics

MeSH terms

Energy TransferHumansRadiation DosageTechnology, RadiologicTomography, X-Ray Computed
Citations
1,967
FWCI
8.85
field-weighted impact
References
8
Percentile
98%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.