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用于门控心肌灌注单光子发射计算机断层扫描(SPECT)的具有同步呼吸和心脏运动的逼真模拟SPECT数据集的开发与初步评估。

The development and initial evaluation of a realistic simulated SPECT dataset with simultaneous respiratory and cardiac motion for gated myocardial perfusion SPECT.

作者信息

Lee Taek-Soo, Tsui Benjamin M W

机构信息

Department of Radiology and Radiological Sciences, Johns Hopkins University, Baltimore, MD 21287, USA.

出版信息

Phys Med Biol. 2015 Feb 21;60(4):1399-413. doi: 10.1088/0031-9155/60/4/1399. Epub 2015 Jan 22.

Abstract

We developed a realistic simulation dataset for simultaneous respiratory and cardiac (R&C) gated SPECT/CT using the 4D NURBS-based Cardiac-Torso (NCAT) Phantom and Monte Carlo simulation methods, and evaluated it for a sample application study. The 4D NCAT phantom included realistic respiratory motion and beating heart motion based on respiratory gated CT and cardiac tagged MRI data of normal human subjects. To model the respiratory motion, a set of 24 separate 3D NCAT phantoms excluding the heart was generated over a respiratory cycle. The beating heart motion was modeled separately with 48 frames per cardiac cycle for each of the 24 respiratory phases. The resultant set of 24  ×  48 3D NCAT phantoms provides a realistic model of a normal human subject at different phases of combined R&C motions. An almost noise-free SPECT projection dataset for each of the 1152 3D NCAT phantoms was generated using Monte Carlo simulation techniques and the radioactivity uptake distribution of (99m)Tc sestamibi in different organs. By grouping and summing the separate projection datasets, separate or simultaneous R&C gated acquired data with different gating schemes could be simulated. In the initial evaluation, we combined the projection datasets into ungated, 6 respiratory-gates only, 8 cardiac-gates only, and combined 6 respiratory-gates & 8 cardiac-gates projection datasets. Each dataset was reconstructed using 3D OS-EM without and with attenuation correction using the averaged and respiratory-gated attenuation maps, and the resulting reconstructed images were compared. These results were used to demonstrate the effects of R&C motions and the reduction of image artifact due to R&C motions by gating and attenuation corrections. We concluded that the realistic 4D NCAT phantom and Monte Carlo simulated SPECT projection datasets with R&C motions are powerful tools in the study of the effects of R&C motions, as well as in the development of R&C gating schemes and motion correction methods for improved SPECT/CT imaging.

摘要

我们使用基于4D NURBS的心脏-躯干(NCAT)体模和蒙特卡罗模拟方法,开发了一个用于同时进行呼吸和心脏(R&C)门控SPECT/CT的逼真模拟数据集,并对其进行了样本应用研究评估。4D NCAT体模基于正常人类受试者的呼吸门控CT和心脏标记MRI数据,包含逼真的呼吸运动和心脏跳动运动。为了模拟呼吸运动,在一个呼吸周期内生成了一组24个单独的不包括心脏的3D NCAT体模。心脏跳动运动针对24个呼吸阶段中的每一个,以每个心动周期48帧进行单独建模。由此产生的24×48个3D NCAT体模集提供了一个正常人类受试者在R&C联合运动不同阶段的逼真模型。使用蒙特卡罗模拟技术和不同器官中(99m)Tc司他米比的放射性摄取分布,为1152个3D NCAT体模中的每一个生成了几乎无噪声的SPECT投影数据集。通过对单独的投影数据集进行分组和求和,可以模拟具有不同门控方案的单独或同时的R&C门控采集数据。在初步评估中,我们将投影数据集组合成非门控、仅6个呼吸门控、仅8个心脏门控以及组合6个呼吸门控和8个心脏门控的投影数据集。每个数据集使用3D OS-EM进行重建,分别使用平均衰减图和呼吸门控衰减图进行有无衰减校正,并对所得重建图像进行比较。这些结果用于证明R&C运动的影响以及通过门控和衰减校正减少因R&C运动导致的图像伪影。我们得出结论,具有R&C运动的逼真4D NCAT体模和蒙特卡罗模拟SPECT投影数据集是研究R&C运动影响以及开发用于改进SPECT/CT成像的R&C门控方案和运动校正方法的有力工具。

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A Simulation Study of the Effect of Phase-Shift on Dual Gated Myocardial Perfusion ECT.相移对双门控心肌灌注ECT影响的模拟研究
IEEE Nucl Sci Symp Conf Rec (1997). 2011 Oct;2011:2728-2732. doi: 10.1109/NSSMIC.2011.6152957.

引用本文的文献

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本文引用的文献

1
A Simulation Study of the Effect of Phase-Shift on Dual Gated Myocardial Perfusion ECT.相移对双门控心肌灌注ECT影响的模拟研究
IEEE Nucl Sci Symp Conf Rec (1997). 2011 Oct;2011:2728-2732. doi: 10.1109/NSSMIC.2011.6152957.
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