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首页> 外文期刊>Journal of Medical Physics/Association of Medical Physicists of India >Measurement of time delay for a prospectively gated CT simulator
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Measurement of time delay for a prospectively gated CT simulator

机译:前瞻性门控CT模拟器的时延测量

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For the management of mobile tumors, respiratory gating is the ideal option, both during imaging and during therapy. The major advantage of respiratory gating during imaging is that it is possible to create a single artifact-free CT data-set during a selected phase of the patient's breathing cycle. The purpose of the present work is to present a simple technique to measure the time delay during acquisition of a prospectively gated CT. The time delay of a Philips Brilliance BigBore? (Philips Medical Systems, Madison, WI) scanner attached to a Varian Real-Time Position Management? (RPM) system (Varian Medical Systems, Palo Alto, CA) was measured. Two methods were used to measure the CT time delay: using a motion phantom and using a recorded data file from the RPM system. In the first technique, a rotating wheel phantom was altered by placing two plastic balls on its axis and rim, respectively. For a desired gate, the relative positions of the balls were measured from the acquired CT data and converted into corresponding phases. Phase difference was calculated between the measured phases and the desired phases. Using period of motion, the phase difference was converted into time delay. The Varian RPM system provides an external breathing signal; it also records transistor-transistor logic (TTL) ‘X-Ray ON’ status signal from the CT scanner in a text file. The TTL ‘X-Ray ON’ indicates the start of CT image acquisition. Thus, knowledge of the start time of CT acquisition, combined with the real-time phase and amplitude data from the external respiratory signal, provides time-stamping of all images in an axial CT scan. The TTL signal with time-stamp was used to calculate when (during the breathing cycle) a slice was recorded. Using the two approaches, the time delay between the prospective gating signal and CT simulator has been determined to be 367 ± 40 ms. The delay requires corrections both at image acquisition and while setting gates for the treatment delivery; otherwise the simulation and treatment may not be correlated with the patient's breathing.Keywords: CT simulator, prospective gating, time delay
机译:对于移动性肿瘤的处理,无论在成像还是在治疗期间,呼吸门控都是理想的选择。成像期间呼吸门控的主要优势在于可以在患者呼吸周期的选定阶段创建单个无伪像的CT数据集。本工作的目的是提出一种简单的技术来测量预期门控CT采集期间的时间延迟。飞利浦华晨BigBore的时间延迟? (威斯康星州麦迪逊市的菲利普斯医疗系统公司)扫描仪是否已附加至瓦里安实时位置管理系统? (RPM)系统(Varian Medical Systems,Palo Alto,CA)进行了测量。两种方法用于测量CT时间延迟:使用运动体模和使用RPM系统中记录的数据文件。在第一种技术中,通过将两个塑料球分别放置在其轴线和轮辋上来改变转轮模型。对于所需的门,从获取的CT数据中测量球的相对位置,并将其转换为相应的相位。计算出被测相与期望相之间的相差。使用运动周期,将相位差转换为时间延迟。 Varian RPM系统提供外部呼吸信号;它还会在文本文件中记录来自CT扫描仪的晶体管-逻辑(TTL)“ X-Ray ON”状态信号。 TTL“ X射线开启”表示CT图像采集开始。因此,了解CT采集的开始时间,并结合来自外部呼吸信号的实时相位和幅度数据,即可在轴向CT扫描中为所有图像提供时间戳。带时间戳的TTL信号用于计算何时(在呼吸周期内)记录切片。使用这两种方法,预期选通信号与CT仿真器之间的时间延迟已确定为367±40 ms。延迟需要在图像采集和设置治疗输送门时进行校正。否则,模拟和治疗可能与患者的呼吸不相关。关键字:CT模拟器,前瞻性门控,时间延迟

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