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首页> 外文期刊>Medical Physics >Effect of motion on tracer activity determination in CT attenuation corrected PET images: a lung phantom study.
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Effect of motion on tracer activity determination in CT attenuation corrected PET images: a lung phantom study.

机译:运动对CT衰减校正的PET图像中示踪剂活性测定的影响:一项肺部模型研究。

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Respiratory motion is known to affect the quantitation of 18FDG uptake in lung lesions. The aim of the study was to investigate the magnitude of errors in tracer activity determination due to motion, and its dependence upon CT attenuation at different phases of the motion cycle. To estimate these errors we have compared maximum activity concentrations determined from PET/CT images of a lung phantom at rest and under simulated respiratory motion. The NEMA 2001 IEC body phantom, containing six hollow spheres with diameters 37, 28, 22, 17, 13, and 10 mm, was used in this study. To mimic lung tissue density, the phantom (excluding spheres) was filled with low density polystyrene beads and water. The phantom spheres were filled with 18FDG solution setting the target-to-background activity concentration ratio at 8:1. PET/CT data were acquired with the phantom at rest, and while it was undergoing periodic motion along the longitudinal axis of the scanner with a range of displacement being 2 cm, and a period of 5 s. The phantom at rest and in motion was scanned using manufacturer provided standard helical/clinical protocol, a helical CT scan followed by a PET emission scan. The moving phantom was also scanned using a 4D-CT protocol that provides volume image sets at different phases of the motion cycle. To estimate the effect of motion on quantitation of activities in six spheres, we have examined the activity concentration data for (a) the stationary phantom, (b) the phantom undergoing simulated respiratory motion, and (c) a moving phantom acquired with PET/4D-CT protocol in which attenuation correction was performed with CT images acquired at different phases of motion cycle. The data for the phantom at rest and in motion acquired with the standard helical/clinical protocol showed that the activity concentration in the spheres can be underestimated by as much as 75%, depending on the sphere diameter. We have also demonstrated that fluctuations in sphere's activity concentration from one PET/CT scan to another acquired with standard helical/clinical protocol can arise as a consequence of spatial mismatch between the sphere's location in PET emission and the CT data.
机译:已知呼吸运动会影响肺部病变中18FDG摄取的定量。该研究的目的是调查由于运动引起的示踪剂活动测定中的误差的大小,以及其在运动循环不同阶段对CT衰减的依赖性。为了估计这些错误,我们比较了从静态和模拟呼吸运动下的肺部体模的PET / CT图像确定的最大活动浓度。本研究使用了NEMA 2001 IEC人体模型,该模型包含六个直径为37、28、22、17、13和10 mm的空心球体。为了模拟肺组织密度,模型(不包括球体)中充满了低密度的聚苯乙烯珠和水。幻像球充满18FDG溶液,目标与背景活性的浓度比为8:1。 PET / CT数据是在人体模型静止的情况下获取的,它沿扫描仪的纵轴进行周期性运动,位移范围为2 cm,周期为5 s。使用制造商提供的标准螺旋/临床规程,螺旋CT扫描,然后进行PET发射扫描,对静止和运动中的体模进行扫描。还使用4D-CT协议扫描了移动体模,该协议在运动周期的不同阶段提供了体积图像集。为了估算运动对六个球体中活动定量的影响,我们检查了以下各项的活动浓度数据:(a)固定体模,(b)进行模拟呼吸运动的体模,以及(c)用PET / 4D-CT协议,其中对在运动周期的不同阶段获取的CT图像执行了衰减校正。通过标准的螺旋/临床协议获取的静止和运动中的人体模型数据表明,视球体直径而定,球体中的活动浓度可能低估了75%。我们还证明,由于PET发射中球体位置与CT数据之间的空间不匹配,从一次PET / CT扫描到通过标准螺旋/临床协议获得的另一次球体的活动浓度波动可能会出现。

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