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首页> 外文期刊>Journal of applied clinical medical physics / >Feasibility study of ultrasound imaging for stereotactic body radiation therapy with active breathing coordinator in pancreatic cancer
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Feasibility study of ultrasound imaging for stereotactic body radiation therapy with active breathing coordinator in pancreatic cancer

机译:主动呼吸协调器超声成像在立体定向放射治疗胰腺癌中的可行性研究

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PurposeStereotactic body radiation therapy (SBRT) allows for high radiation doses to be delivered to the pancreatic tumors with limited toxicity. Nevertheless, the respiratory motion of the pancreas introduces major uncertainty during SBRT. Ultrasound imaging is a non-ionizing, non-invasive, and real-time technique for intrafraction monitoring. A configuration is not available to place the ultrasound probe during pancreas SBRT for monitoring. Methods and MaterialsAn arm-bridge system was designed and built. A CT scan of the bridge-held ultrasound probe was acquired and fused to ten previously treated pancreatic SBRT patient CTs as virtual simulation CTs. Both step-and-shoot intensity-modulated radiation therapy (IMRT) and volumetric-modulated arc therapy (VMAT) planning were performed on virtual simulation CT. The accuracy of our tracking algorithm was evaluated by programmed motion phantom with simulated breath-hold 3D movement. An IRB-approved volunteer study was also performed to evaluate feasibility of system setup. Three healthy subjects underwent the same patient setup required for pancreas SBRT with active breath control (ABC). 4D ultrasound images were acquired for monitoring. Ten breath-hold cycles were monitored for both phantom and volunteers. For the phantom study, the target motion tracked by ultrasound was compared with motion tracked by the infrared camera. For the volunteer study, the reproducibility of ABC breath-hold was assessed. ResultsThe volunteer study results showed that the arm-bridge system allows placement of an ultrasound probe. The ultrasound monitoring showed less than 2?mm reproducibility of ABC breath-hold in healthy volunteers. The phantom monitoring accuracy is 0.14?±?0.08?mm, 0.04?±?0.1?mm, and 0.25?±?0.09?mm in three directions. On dosimetry part, 100% of virtual simulation plans passed protocol criteria. ConclusionsOur ultrasound system can be potentially used for real-time monitoring during pancreas SBRT without compromising planning quality. The phantom study showed high monitoring accuracy of the system, and the volunteer study showed feasibility of the clinical workflow.
机译:目的立体定向身体放射疗法(SBRT)可以将高剂量的辐射以有限的毒性传递给胰腺肿瘤。然而,胰腺的呼吸运动在SBRT期间引入了主要的不确定性。超声成像是一种非电离,非侵入性的实时技术,可用于组分内监测。没有配置可在胰腺SBRT期间放置超声探头进行监视。方法和材料设计并建立了臂桥系统。获得了桥式超声探头的CT扫描,并将其融合到十个先前治疗过的胰腺SBRT患者CT中,作为虚拟模拟CT。在虚拟模拟CT上进行了步调射击强度调制放射治疗(IMRT)和容积调制弧光治疗(VMAT)的计划。我们的跟踪算法的准确性是通过带有模拟屏气3D运动的编程运动体模来评估的。还进行了IRB批准的志愿者研究,以评估系统设置的可行性。三名健康受试者接受了具有主动呼吸控制(ABC)的胰腺SBRT所需的相同患者设置。采集4D超声图像进行监测。幻象和志愿者都监测了十次屏气周期。对于体模研究,将超声跟踪的目标运动与红外摄像机跟踪的运动进行了比较。对于志愿者研究,评估了ABC屏气的可重复性。结果志愿者研究结果表明,臂桥系统允许放置超声探头。超声监测显示,健康志愿者的ABC屏气的再现性低于2毫米。幻像监视精度在三个方向上分别为0.14±0.08mm,0.04±0.1mm和0.25±0.09mm。在剂量测定部分,100%的虚拟仿真计划通过了协议标准。结论我们的超声系统可以潜在地用于胰腺SBRT的实时监测,而不会影响计划质量。幻像研究表明该系统具有很高的监测精度,而志愿者研究表明该临床工作流程的可行性。

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