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首页> 外文期刊>Journal of nuclear cardiology: official publication of the American Society of Nuclear Cardiology >Comparison of 180 degrees and 360 degrees acquisition for myocardial perfusion SPECT with compensation for attenuation, detector response, and scatter: Monte Carlo and mathematical observer results.
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Comparison of 180 degrees and 360 degrees acquisition for myocardial perfusion SPECT with compensation for attenuation, detector response, and scatter: Monte Carlo and mathematical observer results.

机译:比较心肌灌注SPECT的180度和360度采集,并补偿衰减,检测器响应和散射:蒙特卡洛和数学观测器结果。

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摘要

BACKGROUND: The optimal projection data acquisition strategy for myocardial perfusion (MP) single photon emission computed tomography (SPECT) remains controversial. METHODS: We compared MP SPECT using 180 degrees and 360 degrees projection data obtained with the same acquisition time, reconstructed either with filtered back projection (FBP) or the iterative ordered-subsets expectation maximization (OS-EM) algorithm with various combinations of attenuation, detector response, and scatter compensation using mathematical observers and a myocardial defect detection task. We used Monte Carlo-simulated projection data from a population of 3-dimensional nurbs-based cardiac-torso (NCAT) phantoms with ranges of variability in patient anatomy, organ uptake, defect location, defect size, and noise level based on clinical data. Projection data from 180 degrees and 360 degrees acquisitions were generated by assuming the same acquisition time. After iterative or FBP reconstruction, standard postprocessing methods were applied. For each acquisition and reconstruction method, we optimized the number of iterations and cut-off frequency of the Butterworth filter using the Channelized Hotelling Observer methodology. The optimum set of parameters was that which gave the maximum area under the curve. RESULTS: For both acquisition protocols, OS-EM with compensations provided better performance than FBP or OS-EM without compensation. For FBP, the optimized 180 degrees acquisition provided a statistically significant increase in AUC as compared with optimized 360 degrees acquisition. For OS-EM, the AUCs for 180 degrees were slightly larger than for 360 degrees acquisitions when comparing images reconstructed with the same compensations. However, the differences were smaller and not statistically significant. CONCLUSION: With optimized reconstruction and filtering parameters, 180 degrees acquisition provided a statistically significant improvement over 360 degrees acquisition for FBP reconstruction. However, for OS-EM the differences were small and not statistically significant.
机译:背景:心肌灌注(MP)单光子发射计算机断层扫描(SPECT)的最佳投影数据采集策略仍存在争议。方法:我们比较了使用相同采集时间获得的180度和360度投影数据,通过滤波反投影(FBP)或具有不同衰减组合的迭代有序子集期望最大化(OS-EM)算法重建的MP SPECT,检测器响应以及使用数学观测器和心肌缺陷检测任务进行的散射补偿。我们使用了基于3维基于nurbs的心脏躯干(NCAT)体模的蒙特卡洛模拟的投影数据,其基于临床数据的范围在患者的解剖结构,器官吸收,缺损位置,缺损尺寸和噪声水平方面存在差异。通过假设相同的采集时间来生成来自180度和360度采集的投影数据。迭代或FBP重建后,应用标准后处理方法。对于每种采集和重建方法,我们使用信道化的Hotelling观测器方法优化了Butterworth滤波器的迭代次数和截止频率。最佳参数集是给出曲线下最大面积的参数。结果:对于两种采集协议,带补偿的OS-EM都比不带补偿的FBP或OS-EM提供更好的性能。对于FBP,与优化的360度采集相比,优化的180度采集提供了AUC统计显着增加。对于OS-EM,当比较以相同补偿重建的图像时,180度的AUC略大于360度的AUC。但是,差异较小且没有统计学意义。结论:通过优化的重建和滤波参数,与FBP重建的360度采集相比,180度的采集提供了统计学上的显着改进。但是,对于OS-EM,差异很小,并且没有统计学意义。

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