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Fluctuation of quantitative values on acquisition time and the reconstruction conditions in Tc-99m-SPECT

机译:TC-99M-SPECT在采集时间和重建条件下定量值的波动

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ObjectiveThis study aims to carry out a quantitative analysis with high reproducibility using single-photon emission computed tomography/computed tomography (SPECT/CT); we investigated the optimum parameters for the acquisition and the reconstruction.Materials and methodsSPECT images were acquired with varying time per view using SPECT phantom (JS-10) and the body phantom of National Electrical Manufacturers Association and International Electrotechnical Commission (Body-phantom), respectively. For the image reconstruction condition, we changed the product of subset and iteration (SI product) and the Gaussian filter using a three-dimensional ordered subset expectation maximization. A combination of no scattering correction and no attenuation correction (SC-/AC-) and a combination of scattering correction and attenuation correction by CT images (SC+/AC+) were performed. The dose linearity, the recovery coefficient, the scatter ratio, and the coefficient of variation were evaluated using JS-10. Using Body-phantom, contrast-to-noise ratios of the hot spheres (13, 17mm) were calculated. Moreover, the change in the maximum standardized uptake value (SUVmax) and the average SUV (SUVmean) were evaluated for each sphere.ResultFrom the evaluation results using the JS-10, dose linearity, recovery coefficient, scatter ratio, and coefficient of variation were all good when time per view was 50-150s, the Gaussian filter was 8-12mm, and the SI product was 150. From the evaluation results using Body-phantom, comparing the Gaussian filter with 8mm and 12mm, the contrast-to-noise ratio was better for 12mm and the error rate to the change of the scan-time was up to 3.7%. However, SUVmax and SUVmean using 8mm were closer to the design value of the phantom.ConclusionIt is necessary that Quantitative SPECT be acquired at 50s or more per view per detection, reconstructed using a three-dimensional ordered subset expectation maximization with SC+/AC+, the SI product is 150 times, and the Gaussian Filter is 8-12mm. This suggested that the quantitative analysis would be carried out with good reproducibility.
机译:客观的研究旨在使用单光子发射计算机断层扫描/计算断层扫描(SPECT / CT)进行高再现性的定量分析;我们调查了采集和重建的最佳参数。通过使用SPECT Phantom(JS-10)和国家电气制造商协会和国际电工委员会(身体幻影)的身体幻影,获得各种视图的材料和方法的最佳参数。分别。对于图像重建条件,我们使用三维有序子集预期最大化更改了子集和迭代(Si产品)和高斯滤波器的乘积。执行散射校正和没有衰减校正(SC-/ AC-)的组合和CT图像(SC + / AC +)的散射校正和衰减校正的组合。使用JS-10评估剂量线性,回收系数,散射比和变异系数。使用体模,计算热球(13,17mm)的对比度噪声比率。此外,对每个球体评估最大标准化摄取值(SUVMAX)和平均SUV(SUVMEAN)的变化。方法使用JS-10,剂量线性,回收系数,散射比和变异系数来评估评估结果当每个视图时间为50-150秒时,高斯滤波器为8-12mm,Si产品为150.使用Body-Milom的评估结果,将高斯滤波器与8mm和12mm的高斯过滤器相比,对比度噪声12mm的比率更好,扫描时间变化的错误率高达3.7%。然而,使用8mm的Suvmax和Suvmean更接近幻像的设计值.Conclusionit是必要的,每次检测到每次检测到50s或更高的定量Spect,使用SC + / AC +使用三维有序的子集预期最大化来重建。 Si产品为150倍,高斯滤波器为8-12毫米。这表明定量分析将具有良好的再现性。

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