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Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc

Publication ,  Conference
Fu, W; Sturgeon, GM; Agasthya, G; Segars, WP; Kapadia, AJ; Samei, E
Published in: Progress in Biomedical Optics and Imaging Proceedings of SPIE
January 1, 2017

This study aimed to estimate the organ dose reduction potential for organ-dose-based tube current modulated (ODM) thoracic CT with wide dose reduction arc. Twenty-one computational anthropomorphic phantoms (XCAT, age range: 27- 75 years, weight range: 52.0-105.8 kg) were used to create a virtual patient population with clinical anatomic variations. For each phantom, two breast tissue compositions were simulated: 50/50 and 20/80 (glandular-to-adipose ratio). A validated Monte Carlo program was used to estimate the organ dose for standard tube current modulation (TCM) (SmartmA, GE Healthcare) and ODM (GE Healthcare) for a commercial CT scanner (Revolution, GE Healthcare) with explicitly modeled tube current modulation profile, scanner geometry, bowtie filtration, and source spectrum. Organ dose was determined using a typical clinical thoracic CT protocol. Both organ dose and CTDIvol-to-organ dose conversion coefficients (h factors) were compared between TCM and ODM. ODM significantly reduced all radiosensitive organ doses (p<0.01). The breast dose was reduced by 30±2%. For h factors, organs in the anterior region (e.g. thyroid, stomach) exhibited substantial decreases, and the medial, distributed, and posterior region either saw an increase or no significant change. The organ-dose-based tube current modulation significantly reduced organ doses especially for radiosensitive superficial anterior organs such as the breasts.

Duke Scholars

Published In

Progress in Biomedical Optics and Imaging Proceedings of SPIE

DOI

ISSN

1605-7422

Publication Date

January 1, 2017

Volume

10132
 

Citation

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Fu, W., Sturgeon, G. M., Agasthya, G., Segars, W. P., Kapadia, A. J., & Samei, E. (2017). Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc. In Progress in Biomedical Optics and Imaging Proceedings of SPIE (Vol. 10132). https://doi.org/10.1117/12.2255797
Fu, W., G. M. Sturgeon, G. Agasthya, W. P. Segars, A. J. Kapadia, and E. Samei. “Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc.” In Progress in Biomedical Optics and Imaging Proceedings of SPIE, Vol. 10132, 2017. https://doi.org/10.1117/12.2255797.
Fu W, Sturgeon GM, Agasthya G, Segars WP, Kapadia AJ, Samei E. Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc. In: Progress in Biomedical Optics and Imaging Proceedings of SPIE. 2017.
Fu, W., et al. “Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc.” Progress in Biomedical Optics and Imaging Proceedings of SPIE, vol. 10132, 2017. Scopus, doi:10.1117/12.2255797.
Fu W, Sturgeon GM, Agasthya G, Segars WP, Kapadia AJ, Samei E. Estimation of breast dose reduction potential for organ-based tube current modulated CT with wide dose reduction arc. Progress in Biomedical Optics and Imaging Proceedings of SPIE. 2017.

Published In

Progress in Biomedical Optics and Imaging Proceedings of SPIE

DOI

ISSN

1605-7422

Publication Date

January 1, 2017

Volume

10132