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使用能量和注量调制束优化适形电子束治疗。

Optimization of conformal electron beam therapy using energy- and fluence-modulated beams.

作者信息

Hyödynmaa S, Gustafsson A, Brahme A

机构信息

Department of Medical Radiation Physics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Med Phys. 1996 May;23(5):659-66. doi: 10.1118/1.597710.

Abstract

Fluence modulation of multiple electron beams of various energies has been used to optimize the delivered dose distribution during electron beam radiation therapy. By maximizing the probability of achieving tumor control without causing severe complications electron beam fluence profiles have been optimized for superficial target volumes. It is possible to use several equiportal fluence-modulated electron beams to modify the energy deposition with depth in a controlled manner making it possible to use the technique as an alternative to bolus. The technique was tested in two representative phantom geometries and in three clinical patient geometries using a set of five and two different energies. The local maxima in dose for the plans with five energies were typically lower than with the conventional or advanced bolus techniques. The principles for how the technique could be carried out in the future with a fourth generation radiotherapy accelerator are also indicated.

摘要

在电子束放射治疗期间,已采用多种不同能量的电子束的注量调制来优化所输送的剂量分布。通过在不引起严重并发症的情况下最大化实现肿瘤控制的概率,已针对浅表靶区优化了电子束注量分布。可以使用多个等中心注量调制电子束以可控方式改变能量在深度方向上的沉积,从而使该技术有可能作为填充物的替代方法。使用一组五种和两种不同能量,在两种代表性体模几何形状和三种临床患者几何形状中对该技术进行了测试。具有五种能量的计划的剂量局部最大值通常低于传统或先进的填充物技术。文中还指出了未来如何使用第四代放射治疗加速器实施该技术的原理。

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