Development and Clinical Implementation of an Automated Virtual Integrative Planner for Radiation Therapy of Head and Neck Cancer

医学 规划师 医学物理学 放射治疗计划 头颈部癌 公制(单位) 喉 临床试验 放射治疗 外科 运营管理 人工智能 计算机科学 内科学 经济
作者
Elizabeth M. Jaworski,Michelle Lynn Mierzwa,Karen A. Vineberg,John Yao,Jennifer Lobo Shah,Caitlin A. Schonewolf,Dale William Litzenberg,Laila A. Gharzai,Martha M. Matuszak,Kelly C. Paradis,Ashley M. Dougherty,Pamela Burger,Daniel S. Tatro,George Spencer Arnould,Jean Marie Moran,Choonik Lee,Avraham Eisbruch,Charles S. Mayo
出处
期刊:Advances in radiation oncology [Elsevier BV]
卷期号:8 (2): 101029-101029 被引量:6
标识
DOI:10.1016/j.adro.2022.101029
摘要

Purpose Head and neck (HN) radiation (RT) treatment planning is complex and resource intensive. Deviations and inconsistent plan quality significantly affect clinical outcomes. We sought to develop a novel automated virtual integrative (AVI) knowledge-based planning application to reduce planning time, increase consistency, and improve baseline quality. Methods and Materials An in-house write-enabled script was developed from a library of 668 previously treated HN RT plans. Prospective hazard analysis was performed, and mitigation strategies were implemented before clinical release. The AVI-planner software was retrospectively validated in a cohort of 52 recent HN cases. A physician panel evaluated planning limitations during initial deployment, and feedback was enacted via software refinements. A final second set of plans was generated and evaluated. Kolmogorov-Smirnov test in addition to generalized evaluation metric and weighted experience score were used to compare normal tissue sparing between final AVI planner versus respective clinically treated and historically accepted plans. A t test was used to compare the interactive time, complexity, and monitor units for AVI planner versus manual optimization. Results Initially, 86% of plans were acceptable to treat, with 10% minor and 4% major revisions or rejection recommended. Variability was noted in plan quality among HN subsites, with high initial quality for oropharynx and oral cavity plans. Plans needing revisions were comprised of sinonasal, nasopharynx, P-16 negative squamous cell carcinoma unknown primary, or cutaneous primary sites. Normal tissue sparing varied within subsites, but AVI planner significantly lowered mean larynx dose (median, 18.5 vs 19.7 Gy; P < .01) compared with clinical plans. AVI planner significantly reduced interactive optimization time (mean, 2 vs 85 minutes; P < .01). Conclusions AVI planner reliably generated clinically acceptable RT plans for oral cavity, salivary, oropharynx, larynx, and hypopharynx cancers. Physician-driven iterative learning processes resulted in favorable evolution in HN RT plan quality with significant time savings and improved consistency using AVI planner.

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