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扫描离子束治疗中的器官运动管理。

Management of organ motion in scanned ion beam therapy.

机构信息

Department of Radiation Oncology, Universitätsklinikum Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg, Universitätsstraße 27, 91054, Erlangen, Germany.

Heidelberg Ion-Beam Therapy Center (HIT) and Department of Radiation Oncology, University Clinic Heidelberg, Heidelberg, Germany.

出版信息

Radiat Oncol. 2017 Nov 6;12(1):170. doi: 10.1186/s13014-017-0911-z.

Abstract

Scanned ion beam therapy has special demands for treatment of intra-fractionally moving tumors such as lesions in lung or liver. Interplay effects between beam and organ motion can in those settings lead to under-dosage of the target volume. Dedicated treatment techniques such as gating or abdominal compression are required. In addition 4D treatment planning should be used to determine strategies for patient specific treatment planning such as an increased beam focus or the use of internal target volumes incorporating range changes.Several work packages of the Clinical Research Units 214 and 214/2 funded by the German Research Council investigated the management of organ motion in scanned ion beam therapy. A focus was laid on 4D treatment planning using TRiP4D and the development of motion mitigation strategies including their quality assurance. This review focuses on the activity in the second funding period covering adaptive treatment planning strategies, 4D treatment plan optimization, and the application of motion management in pre-clinical research on radiation therapy of cardiac arrhythmias.

摘要

扫描离子束治疗对治疗肺部或肝脏等部位的随时间移动的肿瘤有特殊的要求。在这些情况下,射束和器官运动之间的相互作用可能会导致靶区剂量不足。需要使用门控或腹部压缩等专用治疗技术。此外,还应使用 4D 治疗计划来确定针对特定患者的治疗计划策略,例如增加射束焦点或使用包含范围变化的内部靶区。德国研究联合会资助的临床研究单位 214 和 214/2 的几个工作包研究了扫描离子束治疗中的器官运动管理。重点是使用 TRiP4D 进行 4D 治疗计划以及制定运动缓解策略,包括其质量保证。本文重点介绍了第二个资助期的活动,涵盖了自适应治疗计划策略、4D 治疗计划优化以及在心律失常放射治疗的临床前研究中应用运动管理。

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