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机器人全身立体定向放射外科手术:射波刀集成系统的临床优势。

Robotic whole body stereotactic radiosurgery: clinical advantages of the Cyberknife integrated system.

作者信息

Coste-Manière E, Olender D, Kilby W, Schulz R A

机构信息

Accuray Europe, Paris, France.

出版信息

Int J Med Robot. 2005 Jan;1(2):28-39. doi: 10.1002/rcs.39.

Abstract

Radiosurgery is defined as the delivery of high doses of ionising radiation, in mono- or hypo- fractionated treatments, to destroy tumours or focal areas of pathology. The clinical requirements of designing a radiosurgical treatment system include providing: a) a highly precise beam delivery to targets located throughout the body, b) a highly conformal dose distribution, c) the ability to irradiate both small and/or large complex-shaped lesions while minimising the dose to adjacent radiosensitive tissues and d) the ability to interactively track lesion motion due to normal patient motion. To accomplish this, the CyberKnife radiosurgery system has pioneered in this area by taking advantage of the inherent geometrical targeting precision of a commercial arm-based robotic system carrying a compact X-band linear accelerator and integrated with X-ray imaging and visualisation feedback systems. The arm-mounted linear accelerator, equipped with patient specific anatomical models, registered to the patient in real-time with image guidance, dynamically and safely delivers conformal and homogeneous radiation for therapeutic benefit. This paper details the components of the CyberKnife system and their integration in the clinical workflow of radiosurgery.

摘要

放射外科被定义为在单次或低分割治疗中,通过高剂量电离辐射来破坏肿瘤或病灶区域。设计放射外科治疗系统的临床要求包括:a)向全身各处的靶点提供高度精确的射束;b)高度适形的剂量分布;c)能够照射小型和/或大型复杂形状的病灶,同时将对相邻放射敏感组织的剂量降至最低;d)能够交互式跟踪由于患者正常运动导致的病灶运动。为实现这一目标,射波刀放射外科系统在这一领域率先取得突破,它利用了基于商业机械臂的机器人系统固有的几何靶向精度,该系统搭载一台紧凑型X波段直线加速器,并与X射线成像和可视化反馈系统集成。安装在机械臂上的直线加速器配备了患者特定的解剖模型,通过图像引导与患者实时配准,动态且安全地提供适形和均匀的辐射,以实现治疗效果。本文详细介绍了射波刀系统的组件及其在放射外科临床工作流程中的集成情况。

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