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Technical evaluation of different respiratory monitoring systems used for 4D CT acquisition under free breathing

机译:自由呼吸下用于4D CT采集的不同呼吸监测系统的技术评估

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Respiratory monitoring systems are required to supply CT scanners with information on the patient's breathing during the acquisition of a respiration-correlated computer tomography (RCCT), also referred to as 4D CT. The information a respiratory monitoring system has to provide to the CT scanner depends on the specific scanner. The purpose of this study is to compare two different respiratory monitoring systems (Anzai Respiratory Gating System; C-RAD Sentinel) with respect to their applicability in combination with an Aquilion Large Bore CT scanner from Toshiba. The scanner used in our clinic does not make use of the full time dependent breathing signal, but only single trigger pulses indicating the beginning of a new breathing cycle. Hence the attached respiratory monitoring system is expected to deliver accurate online trigger pulse for each breathing cycle. The accuracy of the trigger pulses sent to the CT scanner has to be ensured by the selected respiratory monitoring system. Since a trigger pulse (output signal) of a respiratory monitoring system is a function of the measured breathing signal (input signal), the typical clinical range of the input signal is estimated for both examined respiratory monitoring systems. Both systems are analyzed based on the following parameters: time resolution, signal amplitude, noise, signal-to-noise ratio (SNR), signal linearity, trigger compatibility, and clinical examples. The Anzai system shows a better SNR ( ≥ 28 dB ) than the Sentinel system ( ≥ 14.6 dB ). In terms of compatibility with the cycle-based image sorting algorithm of the Toshiba CT scanner, the Anzai system benefits from the possibility to generate cycle-based triggers, whereas the Sentinel system is only able to generate amplitude-based triggers. In clinical practice, the combination of a Toshiba CT scanner and the Anzai system will provide better results due to the compatibility of the image sorting and trigger release methods.PACS numbers: 87.57.Q-, 07.07.Df
机译:需要呼吸监测系统,以在获取与呼吸有关的计算机断层扫描(RCCT)(也称为4D CT)期间向CT扫描仪提供有关患者呼吸的信息。呼吸监视系统必须提供给CT扫描仪的信息取决于特定的扫描仪。这项研究的目的是比较两种不同的呼吸监测系统(Anzai呼吸门控系统; C-RAD Sentinel)与东芝的Aquilion大口径CT扫描仪相结合的适用性。我们诊所使用的扫描仪没有利用全时呼吸信号,而是仅使用单个触发脉冲来指示新的呼吸周期的开始。因此,期望连接的呼吸监控系统为每个呼吸周期提供准确的在线触发脉冲。发送到CT扫描仪的触发脉冲的准确性必须由所选的呼吸监控系统来确保。由于呼吸监视系统的触发脉冲(输出信号)是所测呼吸信号(输入信号)的函数,因此对于两个检查过的呼吸监视系统,都将估算输入信号的典型临床范围。两种系统均基于以下参数进行分析:时间分辨率,信号幅度,噪声,信噪比(SNR),信号线性,触发兼容性和临床示例。与Sentinel系统(≥14.6 dB)相比,Anzai系统具有更好的SNR(≥28 dB)。在与东芝CT扫描仪的基于周期的图像分类算法的兼容性方面,Anzai系统受益于生成基于周期的触发器的可能性,而Sentinel系统仅能够生成基于幅度的触发器。在临床实践中,东芝CT扫描仪和Anzai系统的组合将提供更好的结果,因为图像分类和触发器释放方法具有兼容性.PACS编号:87.57.Q-,07.07.Df

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