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Extracranial Radiosurgery Using the CyberKnife

机译:射波刀颅外放射外科

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Several technical drawbacks can limit the clinical applications of conventional stereotactic radiosurgery: It requires the attachment of a rigid frame that immobilizes the patient and provides a frame of reference for aiming radiation beams, which is uncomfortable to patients, complicates fractional treatment, can impede beam aiming and introduce image artifacts, and generally restricts the application of stereotactic radiosurgery to the cranium and the high cervical spine. The CyberKnife solves these problems by using real-time, computer-based image guidance technology to aim a lightweight LINAC with a highly maneuverable robotic arm to deliver conformal radiation doses to tumors of all shapes, all without a rigid frame. Navigation is accomplished using skeletal features or implanted fiducials, and the system adjusts the aim of radiation beams frequently based on changes in patient position. Recent improvements in the system (ie, the introduction of flat-panel amorphous silicon X-ray cameras) have made it applicable to the treatment of tumors throughout the body, including in organs (eg, lungs and pancreas) that move with respiration. The authors summarize the characteristics of the CyberKnife system, describe their recent work adapting the system to treat extracranial tumors, and provide a brief update of their experience treating adenocarcinoma of the pancreas using the system.
机译:几个技术缺陷可能会限制常规立体定向放射外科手术的临床应用:它需要固定一个刚性框架,该框架可以固定患者并为瞄准放射束提供参考框架,这会使患者感到不舒服,使分次治疗复杂化,可能会阻碍射束的瞄准并引入图像伪影,通常限制了立体定向放射外科在颅骨和高颈椎中的应用。射波刀通过使用基于计算机的实时图像引导技术来解决这些问题,其目标是轻巧的LINAC和高度可操纵的机械臂,以向所有形状的肿瘤提供保形辐射剂量,而所有这些都无需使用刚性框架。导航是通过使用骨骼特征或植入的基准来完成的,并且系统会根据患者位置的变化频繁地调整辐射束的目标。该系统的最新改进(即,引入平板非晶硅X射线照相机)使其可用于治疗整个身体的肿瘤,包括随着呼吸运动的器官(例如,肺和胰腺)中的肿瘤。作者总结了射波刀系统的特点,描述了他们最近对该系统进行修改以治疗颅外肿瘤的工作,并简要介绍了他们使用该系统治疗胰腺腺癌的经验。

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