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Optimal number of respiratory gates in positron emission tomography: a cardiac patient study.

机译:正电子发射断层扫描中最佳的呼吸门数量:一项心脏病患者研究。

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摘要

Respiratory gating is the method of dividing the data from a tomographic scan with respect to the respiratory phase of the patient. It enables more accurate images by reducing the effects of motion blur and attenuation artifacts due to motion. However, it induces image degradation due to higher noise levels as the number of events per gate is reduced. Due to lack of systematic studies in this regard, different numbers of gates are being used in the scientific and clinical practice. The present study aims at examining the relationship between the respiratory signal, the number of gates required for accurate motion detection, and the level of noise with two different methods of gating: (1) Amplitude-based gating and (2) time-based gating. Patient data with a wide range of motion are used for the study. The results show that time-based gating underestimates the real respiratory displacement by up to 50%. The optimal number of gates is 8 for amplitude- and 6 for time-based gatings. The noise properties remain the same with either method but noise increases with increasing number of gates.
机译:呼吸门控是根据患者的呼吸相位对断层扫描数据进行划分的方法。通过减少运动模糊和运动引起的衰减伪影的影响,它可以实现更精确的图像。但是,由于每个门的事件数量减少,由于较高的噪声水平,它会导致图像降级。由于在这方面缺乏系统的研究,因此在科学和临床实践中使用了不同数量的闸门。本研究旨在通过两种不同的门控方法检查呼吸信号,准确运动检测所需的门数和噪声水平之间的关系:(1)基于幅度的门控和(2)基于时间的门控。具有广泛运动范围的患者数据用于研究。结果表明,基于时间的门控低估了实际的呼吸位移达50%。对于基于幅度的门控,最佳门数为8,对于基于时间的门控为6。两种方法的噪声特性都相同,但是噪声随着门数量的增加而增加。

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