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正电子发射断层扫描中的呼吸门控:不同门控方案的定量比较。

Respiratory gating in positron emission tomography: a quantitative comparison of different gating schemes.

机构信息

Department of Nuclear Medicine, University Hospital Münster, Münster, Germany.

出版信息

Med Phys. 2007 Jul;34(7):3067-76. doi: 10.1118/1.2748104.

Abstract

Respiratory gating is used for reducing the effects of breathing motion in a wide range of applications from radiotherapy treatment to diagnostical imaging. Different methods are feasible for respiratory gating. In this study seven gating methods were developed and tested on positron emission tomography (PET) listmode data. The results of seven patient studies were compared quantitatively with respect to motion and noise. (1) Equal and (2) variable time-based gating methods use only the time information of the breathing cycle to define respiratory gates. (3) Equal and (4) variable amplitude-based gating approaches utilize the amplitude of the respiratory signal. (5) Cycle-based amplitude gating is a combination of time and amplitude-based techniques. A baseline correction was applied to methods (3) and (4) resulting in two new approaches: Baseline corrected (6) equal and (7) variable amplitude-based gating. Listmode PET data from seven patients were acquired together with a respiratory signal. Images were reconstructed applying the seven gating methods. Two parameters were used to quantify the results: Motion was measured as the displacement of the heart due to respiration and noise was defined as the standard deviation of pixel intensities in a background region. The amplitude-based approaches (3) and (4) were superior to the time-based methods (1) and (2). The improvement in capturing the motion was more than 30% (up to 130%) in all subjects. The variable time (2) and amplitude (4) methods had a more uniform noise distribution among all respiratory gates compared to equal time (1) and amplitude (3) methods. Baseline correction did not improve the results. Out of seven different respiratory gating approaches, the variable amplitude method (4) captures the respiratory motion best while keeping a constant noise level among all respiratory phases.

摘要

呼吸门控技术被广泛应用于从放射治疗到诊断成像等领域,用于减轻呼吸运动的影响。有多种方法可用于呼吸门控。在这项研究中,开发了七种门控方法,并在正电子发射断层扫描(PET)列表模式数据上进行了测试。对七项患者研究的结果进行了定量比较,比较了运动和噪声。(1)等时和(2)变时的门控方法仅使用呼吸周期的时间信息来定义呼吸门。(3)等幅和(4)变幅的门控方法利用呼吸信号的幅度。(5)基于周期的幅度门控是时间和幅度技术的结合。对方法(3)和(4)应用了基线校正,产生了两种新方法:(6)基线校正等幅和(7)基线校正变幅门控。从七名患者获得了与呼吸信号一起采集的列表模式 PET 数据。应用七种门控方法重建图像。使用两个参数来量化结果:运动是指由于呼吸导致的心脏位移,噪声定义为背景区域中像素强度的标准差。基于幅度的方法(3)和(4)优于基于时间的方法(1)和(2)。在所有受试者中,捕获运动的改善幅度超过 30%(高达 130%)。与等时(1)和等幅(3)方法相比,变时(2)和变幅(4)方法在所有呼吸门中具有更均匀的噪声分布。基线校正并未改善结果。在七种不同的呼吸门控方法中,变幅方法(4)在保持所有呼吸阶段噪声水平恒定的情况下,最能捕捉呼吸运动。

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