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首页> 外文期刊>Medical Physics >Development and evaluation of an ultrasound-guided tracking and gating system for hepatic radiotherapy.
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Development and evaluation of an ultrasound-guided tracking and gating system for hepatic radiotherapy.

机译:开发和评估用于肝癌放射治疗的超声引导跟踪和门控系统。

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摘要

PURPOSE: Respiratory motion must be accounted for daily in order to permit optimum radiotherapy of hepatic malignancies. However, existing tracking systems are often invasive or poorly tolerated by patients. The authors describe the development and validation of an ultrasound-guided tracking and gating system for stereotactic body radiation therapy of the liver. METHODS: This noninvasive system is designed to determine the correlation between tumor and external fiducial motion and to verify the optimum gating level for treatment delivery daily. A tracked ultrasound probe moves with patient respiration, obtaining 2D ultrasound images of tumor motion throughout the respiratory cycle. The target volume is registered to the static radiotherapy treatment beams in order to verify optimum gating levels. These gating levels are then transferred to an existing gating system for treatment delivery. The authors examined the temporal and spatial accuracy of this system using a custom-built phantom and verified the accuracy of gating level transfer and delivery. RESULTS: The temporal accuracy of the ultrasound-guided system was shown to be comparable to the existing clinical x-ray imaging system. Using ultrasound rather than x-rays to image internal targets provides good soft-tissue contrast without the invasiveness of implanting fiducial markers. High frame rates enable continuous monitoring of the target throughout the respiratory cycle. The authors anticipate this passive monitoring system should be well tolerated by patients. CONCLUSIONS: The system developed provides good quality video of the laboratory motion phantom and can be successfully used in gated beam delivery.
机译:目的:必须每天进行呼吸运动,以便对肝恶性肿瘤进行最佳放疗。但是,现有的跟踪系统通常是侵入性的或患者难以忍受的。作者描述了用于肝脏立体定向放射治疗的超声引导跟踪和门控系统的开发和验证。方法:该无创系统旨在确定肿瘤与外部基准运动之间的相关性,并验证每天进行治疗的最佳门控水平。跟踪的超声探头会随着患者的呼吸而移动,从而在整个呼吸周期中获得肿瘤运动的二维超声图像。将目标体积记录到静态放射治疗治疗束中,以验证最佳门控水平。然后将这些选通级别转移到现有的选通系统以进行治疗。作者使用定制的幻像检查了该系统的时间和空间准确性,并验证了门控电平传输和传递的准确性。结果:超声引导系统的时间准确性被证明与现有的临床X射线成像系统相当。使用超声波而不是X射线对内部目标成像可提供良好的软组织对比度,而无需植入基准标记。高帧频可在整个呼吸周期内连续监控目标。作者预计该被动监测系统应为患者良好耐受。结论:开发的系统可提供高质量的实验室运动体模视频,并可成功用于门控束传输。

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