Abstract

Intensity‐modulated radiation therapy (IMRT) has become a standard technique in radiation therapy for treating different types of cancers. Various class solutions have been developed for simple cases (e.g., localized prostate, whole breast) to generate IMRT plans efficiently. However, for more complex cases (e.g., head and neck, pelvic nodes), it can be time‐consuming for a planner to generate optimized IMRT plans. To generate optimal plans in these more complex cases which generally have multiple target volumes and organs at risk, it is often required to have additional IMRT optimization structures such as dose limiting ring structures, adjust beam geometry, select inverse planning objectives and associated weights, and additional IMRT objectives to reduce cold and hot spots in the dose distribution. These parameters are generally manually adjusted with a repeated trial and error approach during the optimization process. To improve IMRT planning efficiency in these more complex cases, an iterative method that incorporates some of these adjustment processes automatically in a planning script is designed, implemented, and validated. In particular, regional optimization has been implemented in an iterative way to reduce various hot or cold spots during the optimization process that begins with defining and automatic segmentation of hot and cold spots, introducing new objectives and their relative weights into inverse planning, and turn this into an iterative process with termination criteria. The method has been applied to three clinical sites: prostate with pelvic nodes, head and neck, and anal canal cancers, and has shown to reduce IMRT planning time significantly for clinical applications with improved plan quality. The IMRT planning scripts have been used for more than 500 clinical cases.PACS numbers: 87.55.D, 87.55.de

Highlights

  • 177 Xhaferllari et al.: One-button Intensity-modulated radiation therapy (IMRT) regional optimization various class solutions or protocols can be developed to generate an IMRT plan efficiently.(5) for complicated cases such as some of head and neck cancers, it is still time-consuming to generate optimized IMRT plans

  • Automated IMRT planning script was recently published for optimization of breast radiotherapy with tangential beams.(5) Here, we present an automated planning process for more complicated head and neck, prostate with pelvic nodes, and anal canal cases

  • We have developed IMRT planning scripts for a few clinical sites to automate most of IMRT planning process

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Summary

Introduction

177 Xhaferllari et al.: One-button IMRT regional optimization various class solutions or protocols can be developed to generate an IMRT plan efficiently.(5) for complicated cases such as some of head and neck cancers, it is still time-consuming to generate optimized IMRT plans. Besides requirements of accurate delineations of various target volumes and organs at risk (OAR), it is often required to generate additional IMRT optimization structures such as dose limiting ring structures, manually selecting beam directions and energies, IMRT objectives and associated weights. There are on-going research activities to find more efficient ways for IMRT planning.(6-12) Multicriteria optimization technique(13-20) has been introduced into IMRT planning in order to help solve issues faced with single objective planning where a weight for each objective needs to be set before the plan can be optimized Currently, it is still time-consuming with multicriteria optimization to generate and navigate through a large number of plans in Pareto surface. Multicriteria optimization has been commercialized in RaySearch Laboratories’ planning system (RaySearch Laboratories, Stockholm, Sweden).(21)

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