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Strategies for CT Radiation Dose Optimization

Radiology · 2004 · Vol. 230(3) · pp. 619–628

Abstract

Recent technologic advances have markedly enhanced the clinical applications of computed tomography (CT). While the benefits of CT exceed the harmful effects of radiation exposure in patients, increasing radiation doses to the population have raised a compelling case for reduction of radiation exposure from CT. Strategies for radiation dose reduction are difficult to devise, however, because of a lack of guidelines regarding CT examination and scanning techniques. Various methods and strategies based on individual patient attributes and CT technology have been explored for dose optimization. It is the purpose of this review article to outline basic principles of CT radiation exposure and emphasize the need for CT radiation dose optimization based on modification of scanning parameters and application of recent technologic innovations.

Radiation Dose and ImagingAdvanced X-ray and CT ImagingMedical Imaging Techniques and ApplicationsMedicineRadiation doseMedical physicsComputed tomographyRadiation exposureNuclear medicineReduction (mathematics)RadiationRadiologyOptics

MeSH terms

AdultChildHumansNeoplasms, Radiation-InducedRadiation ProtectionRadiometryTomography, X-Ray ComputedRisk Assessment
Citations
1,053
FWCI
33.17
field-weighted impact
References
69
Percentile
100%
vs. same field & year
Citations per year
References
Minimizing Radiation Dose for Pediatric Body Applications of Single-Detector Helical CT
American Journal of Roentgenology · 2001 · 477 citations
Estimated Risks of Radiation-Induced Fatal Cancer from Pediatric CT
American Journal of Roentgenology · 2001 · 3,219 citations
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