Fan beam CT-guided online adaptive external radiotherapy of uterine cervical cancer: a dosimetric evaluation

Author:

Peng Haibo,Zhang Jie,Xu Ningyue,Zhou Yangang,Tan Huigang,Ren Tao

Abstract

Abstract Purpose To discuss the dosimetric advantages and reliability of the accurate delivery of online adaptive radiotherapy(online ART) for uterine cervical cancer(UCC). Methods and materials Six UCC patients were enrolled in this study. 95% of the planning target volume (PTV) reached 100% of the prescription dose (50.4 Gy/28fractions/6weeks) was required. The patients were scanned with uRT-Linac 506c KV-FBCT then the target volume (TV) and organs at risk (OARs) were delineated by doctors. The dosimeters designed and obtained a routine plan (Plan0). KV-FBCT was used for image guidance before subsequent fractional treatment. The online ART was processed after registration, which acquired a virtual nonadaptive radiotherapy plan (VPlan) and an adaptive plan (APlan). VPlan was the direct calculation of Plan0 on the fractional image, while APlan required adaptive optimization and calculation. In vivo dose monitoring and three-dimensional dose reconstruction were required during the implementation of APlan. Results The inter-fractional volumes of the bladder and rectum changed greatly among the treatments. These changes influenced the primary gross tumor volume (GTVp) and the position deviation of GTVp and PTV and positively affected the prescription dose coverage of TV. GTVp decreased gradually along with dose accumulation. The Dmax, D98, D95, D50, and D2 of APlan were superior to those of VPlan in target dose distribution. APlan had good conformal index, homogeneity index and target coverage. The rectum V40 and Dmax, bladder V40, the small bowel V40 and Dmax of APlan were better than that of VPlan. The APlan’s fractional mean γ passing rate was significantly higher than the international standard and the mean γ passing rate of all cases after the three-dimensional reconstruction was higher than 97.0%. Conclusion Online ART in external radiotherapy of UCC significantly improved the dose distribution and can become an ideal technology to achieve individualized precise radiotherapy.

Funder

1. Applied basic research program, Science & Technology Department of Sichuan Province

2. Introduction Foundation of High-level Talents of the First Affiliated Hospital, Chengdu Medical College

3. The Special Project of the First Affiliated Hospital, Chengdu Medical College

4. The Cultivation Project of Key Subjects (oncology department), First Affiliated Hospital, Chengdu Medical College. Wu Jieping Medical Foundation

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Genetics,Oncology

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