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Dosimetric Quality of Online Adapted Pancreatic Cancer Treatment Plans on an MRI-Guided Radiation Therapy System

Authors :
Phillip E. Chow, MS
Fang-I. Chu, PhD
Nzhde Agazaryan, PhD
Minsong Cao, PhD
Margeurite Tyran, MD
Yingli Yang, PhD
Daniel Low, PhD
Ann Raldow, MD
Percy Lee, MD
Michael Steinberg, MD
James M. Lamb, PhD
Source :
Advances in Radiation Oncology, Vol 6, Iss 3, Pp 100682- (2021)
Publication Year :
2021
Publisher :
Elsevier, 2021.

Abstract

Purpose: Stereotactic magnetic resonance imageā€“guided adaptive radiation therapy (SMART) is an emerging technique that shows promise in the treatment of pancreatic cancer and other abdominopelvic malignancies. However, it is unknown whether the time-limited nature of on-table adaptive planning may result in dosimetrically suboptimal plans. The purpose of this study was to quantitatively address that question through systemic retrospective replanning of treated on-table adaptive pancreatic cancer cases. Methods and Materials: Of 74 consecutive adapted fractions, 30 were retrospectively replanned based on deficiencies in planning target volume (PTV) and gross tumor volume (GTV) coverage or doses to organs-at-risk (OARs) that exceeded ideal constraints. Retrospective plans were created by adjusting dose-volume objectives in an iterative fashion until deemed optimized. The goal of replanning was to improve PTV/GTV coverage while keeping the dose to gastrointestinal OARs the same or lower or to reduce OAR doses while keeping PTV coverage the same or higher. The global maximum dose was required to be maintained within 2% of that of the treated adaptive plan to eliminate it as a confounding factor. A threshold of 5% improvement in PTV coverage or 5% decrease in OAR dose was used to define a clinically significant improvement. Results: Of the 30 replans, 7 obtained at least 5% PTV coverage improvement. The average increase in PTV coverage for these plans was 11%. No plans were clinically significantly improved in terms of OAR sparing. Changes in beam-on time did not show any correlation. Statistical analysis via a linear mixed-effects model with a nested random effect suggested that both GTV and PTV coverage were improved over SMART process plans by 0.91 cc (P = .02) and 2.03 cc (P < .001), respectively. Conclusions: Dosimetric plan quality of at least 10% of SMART fractions may be improved through more extensive replanning than is currently performed on-table. Further work is needed to develop an automated replanning workflow to streamline the in-depth replanning process to better fit into an on-table adaptive workflow.

Details

Language :
English
ISSN :
24521094
Volume :
6
Issue :
3
Database :
Directory of Open Access Journals
Journal :
Advances in Radiation Oncology
Publication Type :
Academic Journal
Accession number :
edsdoj.0a5678010e8047d7b19e5d882716d949
Document Type :
article
Full Text :
https://doi.org/10.1016/j.adro.2021.100682