Zarepisheh Masoud, Hong Linda, Zhou Ying, Huang Qijie, Yang Jie, Jhanwar Gourav, Pham Hai D, Dursun Pinar, Zhang Pengpeng, Hunt Margie A, Mageras Gig S, Yang Jonathan T, Yamada Yoshiya, Deasy Joseph O
Departments of Medical Physics, Memorial Sloan Kettering Cancer Center, New York.
Department of Radiation Oncology, Memorial Sloan Kettering Cancer Center, New York.
INFORMS J Appl Anal. 2022 Jan-Feb;52(1):69-89. doi: 10.1287/inte.2021.1095. Epub 2022 Feb 1.
Each year, approximately 18 million new cancer cases are diagnosed worldwide, and about half must be treated with radiotherapy. A successful treatment requires treatment planning with the customization of penetrating radiation beams to sterilize cancerous cells without harming nearby normal organs and tissues. This process currently involves extensive manual tuning of parameters by an expert planner, making it a time-consuming and labor-intensive process, with quality and immediacy of critical care dependent on the planner's expertise. To improve the speed, quality, and availability of this highly specialized care, Memorial Sloan Kettering Cancer Center developed and applied advanced optimization tools to this problem (e.g., using hierarchical constrained optimization, convex approximations, and Lagrangian methods). This resulted in both a greatly improved radiotherapy treatment planning process and the generation of reliable and consistent high-quality plans that reflect clinical priorities. These improved techniques have been the foundation of high-quality treatments and have positively impacted over 4,000 patients to date, including numerous patients in severe pain and in urgent need of treatment who might have otherwise required longer hospital stays or undergone unnecessary surgery to control the progression of their disease. We expect that the wide distribution of the system we developed will ultimately impact patient care more broadly, including in resource-constrained countries.
全球每年约有1800万例新癌症病例被诊断出来,其中约一半患者必须接受放射治疗。成功的治疗需要进行治疗计划,定制穿透性辐射束以杀灭癌细胞,同时不损害附近的正常器官和组织。目前,这一过程需要专家计划者对参数进行大量的手动调整,使其成为一个耗时且劳动强度大的过程,重症护理的质量和及时性取决于计划者的专业知识。为了提高这种高度专业化护理的速度、质量和可及性,纪念斯隆凯特琳癌症中心针对这一问题开发并应用了先进的优化工具(例如,使用分层约束优化、凸近似和拉格朗日方法)。这不仅极大地改进了放射治疗计划流程,还生成了反映临床优先级的可靠且一致的高质量计划。这些改进技术一直是高质量治疗的基础,迄今为止已对4000多名患者产生了积极影响,其中包括许多剧痛且急需治疗的患者,否则他们可能需要更长时间的住院治疗或接受不必要的手术来控制疾病进展。我们预计,我们所开发系统的广泛应用最终将更广泛地影响患者护理,包括在资源有限的国家。