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Synchrony--cyberknife respiratory compensation technology.

机译:同步-气刀呼吸补偿技术。

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Studies of organs in the thorax and abdomen have shown that these organs can move as much as 40 mm due to respiratory motion. Without compensation for this motion during the course of external beam radiation therapy, the dose coverage to target may be compromised. On the other hand, if compensation of this motion is by expansion of the margin around the target, a significant volume of normal tissue may be unnecessarily irradiated. In hypofractionated regimens, the issue of respiratory compensation becomes an important factor and is critical in single-fraction extracranial radiosurgery applications. CyberKnife is an image-guided radiosurgery system that consists of a 6-MV LINAC mounted to a robotic arm coupled through a control loop to a digital diagnostic x-ray imaging system. The robotic arm can point the beam anywhere in space with 6 degrees of freedom, without being constrained to a conventional isocenter. The CyberKnife has been recently upgraded with a real-time respiratory tracking and compensation system called Synchrony. Using external markers in conjunction with diagnostic x-ray images, Synchrony helps guide the robotic arm to move the radiation beam in real time such that the beam always remains aligned with the target. With the aid of Synchrony, the tumor motion can be tracked in three-dimensional space, and the motion-induced dosimetric change to target can be minimized with a limited margin. The working principles, advantages, limitations, and our clinical experience with this new technology will be discussed.
机译:对胸部和腹部器官的研究表明,由于呼吸运动,这些器官可以移动多达40毫米。在外部束放射治疗的过程中,如果不对此运动进行补偿,则可能会损害目标的剂量范围。另一方面,如果通过围绕目标的边缘扩展来补偿此运动,则可能会不必要地照射大量正常组织。在超分割方案中,呼吸补偿问题成为一个重要因素,并且在单分割颅外放射外科应用中至关重要。射波刀是一种由图像引导的放射外科手术系统,包括一个安装在机器人手臂上的6-MV LINAC,该机器人手臂通过控制回路与数字诊断X射线成像系统耦合。机械臂可以以6个自由度将光束指向空间中的任何位置,而不会受到常规等角点的限制。射波刀最近已升级为称为Synchrony的实时呼吸跟踪和补偿系统。通过将外部标记物与诊断X射线图像结合使用,“同步”有助于引导机械臂实时移动辐射束,从而使辐射束始终与目标对准。借助同步,可以在三维空间中跟踪肿瘤的运动,并且可以以有限的余量将运动引起的目标剂量变化最小化。我们将讨论这项新技术的工作原理,优点,局限性以及我们的临床经验。

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