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Research ArticlePatient SafetyF

Radiation Dose Reduction in Temporal Bone CT with Iterative Reconstruction Technique

Y.T. Niu, D. Mehta, Z.R. Zhang, Y.X. Zhang, Y.F. Liu, T.L. Kang, J.F. Xian and Z.C. Wang
American Journal of Neuroradiology June 2012, 33 (6) 1020-1026; DOI: https://doi.org/10.3174/ajnr.A2941
Y.T. Niu
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D. Mehta
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Z.R. Zhang
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Y.X. Zhang
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Y.F. Liu
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T.L. Kang
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J.F. Xian
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Z.C. Wang
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Abstract

BACKGROUND AND PURPOSE: Iterative reconstruction of CT images is characterized by reduced image noise and may allow reduction in radiation exposure. We investigated the influence of an IRT technique on image quality and radiation dose savings when applied to temporal bone CT.

MATERIALS AND METHODS: Based on the typical image quality level of adult subjects using routine radiation dose and FBP, an exsomatized cadaveric head with CNR characteristics closest to the level of clinical subjects was identified. Cadaver acquisitions were performed at multiple levels of tube current exposure. Reconstructions were performed using FBP and IRT (iDose), with multiple iDose levels applied for each acquisition. Transverse and coronal reformations of all reconstructions were evaluated subjectively and objectively. Phantom tests were performed to validate the protocol optimizations with iDose, specifically the spatial resolution relative to routine dose acquisitions. Finally, the results of protocol optimization with iDose were clinically validated in 50 patients.

RESULTS: At the same radiation dose, the image CNR of iDose reconstructions was higher than that of FBP and progressively increased with higher iDose levels. The combination of 100 mAs/section and iDoseL5 was the lowest dose that met the requirements for diagnostic acceptability, with CNR slightly higher than our routine institution protocol of 200 mAs/section with FBP reconstruction. Spatial resolution characteristics were similar between FBP and iDose at all different strengths. The findings were consistent among the cadaver, phantom, and clinical acquisitions.

CONCLUSIONS: The iDose IRT can help reduce radiation dose of temporal bone CT by 50% relative to routine institution protocols with FBP, while maintaining diagnostic image quality.

ABBREVIATIONS:

CNR
contrast-to-noise ratio
CTDIvol
volume CT dose index
DLP
dose-length product
FBP
filtered back-projection
HU
Hounsfield unit
IRT
iterative reconstruction technique
  • © 2012 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 33 (6)
American Journal of Neuroradiology
Vol. 33, Issue 6
1 Jun 2012
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Y.T. Niu, D. Mehta, Z.R. Zhang, Y.X. Zhang, Y.F. Liu, T.L. Kang, J.F. Xian, Z.C. Wang
Radiation Dose Reduction in Temporal Bone CT with Iterative Reconstruction Technique
American Journal of Neuroradiology Jun 2012, 33 (6) 1020-1026; DOI: 10.3174/ajnr.A2941

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Radiation Dose Reduction in Temporal Bone CT with Iterative Reconstruction Technique
Y.T. Niu, D. Mehta, Z.R. Zhang, Y.X. Zhang, Y.F. Liu, T.L. Kang, J.F. Xian, Z.C. Wang
American Journal of Neuroradiology Jun 2012, 33 (6) 1020-1026; DOI: 10.3174/ajnr.A2941
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Cited By...

  • Full Dose-Reduction Potential of Statistical Iterative Reconstruction for Head CT Protocols in a Predominantly Pediatric Population
  • Temporal Bone CT: Improved Image Quality and Potential for Decreased Radiation Dose Using an Ultra-High-Resolution Scan Mode with an Iterative Reconstruction Algorithm
  • Six iterative reconstruction algorithms in brain CT: a phantom study on image quality at different radiation dose levels
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