Limits of Ultra-Low Dose CT Attenuation Correction for PET/CT.

Ting Xia, Adam M Alessio, Paul E Kinahan
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引用次数: 11

Abstract

We present an analysis of the effects of ultra-low dose X-ray computerized tomography (CT) based attenuation correction for positron emission tomography (PET). By ultra low dose we mean less than approximately 5 mAs or 0.5 mSv total effective whole body dose. The motivation is the increased interest in using respiratory motion information acquired during the CT scan for both phase-matched CT-based attenuation correction and for motion estimation. Since longer duration CT scans are desired, radiation dose to the patient can be a limiting factor. In this study we evaluate the impact of reducing photon flux rates in the CT data on the reconstructed PET image by using the CATSIM simulation tool for the CT component and the ASIM simulation tool for the PET component. The CT simulation includes effects of the x-ray tube spectra, beam conditioning, bowtie filter, detector noise, and bean hardening correction. The PET simulation includes the effect of attenuation and photon counting. Noise and bias in the PET image were evaluated from multiple realizations of test objects. We show that techniques can be used to significantly reduce the mAs needed for CT based attenuation correction if the CT is not used for diagnostic purposes. The limiting factor, however, is not the noise in the CT image but rather the bias introduced by CT sinogram elements with no detected flux. These results constrain the methods that can be used to lower CT dose in a manner suitable for attenuation correction of PET data. We conclude that ultra-low-dose CT for attenuation correction of PET data is feasible with current PET/CT scanners.

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PET/CT的超低剂量CT衰减校正限度
我们分析了基于衰减校正的超低剂量x射线计算机断层扫描(CT)对正电子发射断层扫描(PET)的影响。所谓超低剂量,我们指的是小于约5毫希或0.5毫希的全身总有效剂量。其动机是利用CT扫描期间获得的呼吸运动信息进行相位匹配CT衰减校正和运动估计的兴趣增加。由于需要更长时间的CT扫描,对患者的辐射剂量可能是一个限制因素。在本研究中,我们使用CATSIM模拟工具对CT分量和ASIM模拟工具对PET分量进行模拟,评估降低CT数据中的光子通量率对重建PET图像的影响。CT模拟包括x射线管光谱、光束调理、领结滤波器、探测器噪声和豆硬化校正的影响。PET仿真包括衰减效应和光子计数效应。从多个测试对象的实现中评估PET图像中的噪声和偏差。我们表明,如果CT不用于诊断目的,则可以使用技术显着减少基于CT的衰减校正所需的mAs。然而,限制因素不是CT图像中的噪声,而是没有检测到通量的CT正弦图元素引入的偏差。这些结果限制了可以用于降低CT剂量的方法,以适合PET数据衰减校正的方式。我们得出结论,超低剂量CT对PET数据的衰减校正是可行的,目前的PET/CT扫描仪。
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