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Three-dimensional dose accumulation in pseudo-split-field IMRT and brachytherapy for locally advanced cervical cancer.

Authors :
Sun B
Yang D
Esthappan J
Garcia-Ramirez J
Price S
Mutic S
Schwarz JK
Grigsby PW
Tanderup K
Source :
Brachytherapy [Brachytherapy] 2015 Jul-Aug; Vol. 14 (4), pp. 481-9. Date of Electronic Publication: 2015 May 06.
Publication Year :
2015

Abstract

Purpose: Dose accumulation of split-field external beam radiotherapy (EBRT) and brachytherapy (BT) is challenging because of significant EBRT and BT dose gradients in the central pelvic region. We developed a method to determine biologically effective dose parameters for combined split-field intensity-modulated radiation therapy (IMRT) and image-guided BT in locally advanced cervical cancer.<br />Methods and Materials: Thirty-three patients treated with split-field-IMRT to 45.0-51.2 Gy in 1.6-1.8 Gy per fraction to the elective pelvic lymph nodes and to 20 Gy to the central pelvis region were included in this study. Patients received six weekly fractions of high-dose rate BT to 6.5-7.3 Gy per fraction. A dose tracker software was developed to compute the equivalent dose in 2-Gy fractions (EQD2) to gross tumor volume (GTV), organs-at-risk and point A. Total dose-volume histogram parameters were computed on the 3D combined EQD2 dose based on rigid image registration. The dose accumulation uncertainty introduced by organ deformations between IMRT and BT was evaluated.<br />Results: According to International Commission on Radiation Unit and Measurement and GEC European Society for Therapeutic Radiology and Oncology recommendations, D98, D90, D50, and D2cm3 EQD2 dose-volume histogram parameters were computed. GTV D98 was 84.0 ± 26.5 Gy and D2cc was 99.6 ± 13.9 Gy, 67.4 ± 12.2 Gy, 75.0 ± 10.1 Gy, for bladder, rectum, and sigmoid, respectively. The uncertainties induced by organ deformation were estimated to be -1 ± 4 Gy, -3 ± 5 Gy, 2 ± 3 Gy, and -3 ± 5 Gy for bladder, rectum, sigmoid, and GTV, respectively.<br />Conclusions: It is feasible to perform 3D EQD2 dose accumulation to assess high and intermediate dose regions for combined split-field IMRT and BT.<br /> (Copyright © 2015 American Brachytherapy Society. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1873-1449
Volume :
14
Issue :
4
Database :
MEDLINE
Journal :
Brachytherapy
Publication Type :
Academic Journal
Accession number :
25958039
Full Text :
https://doi.org/10.1016/j.brachy.2015.04.003