首页> 外文期刊>The Journal of Nuclear Medicine >A comparison of 180 degrees and 360 degrees acquisition for attenuation-compensated thallium-201 SPECT images.
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A comparison of 180 degrees and 360 degrees acquisition for attenuation-compensated thallium-201 SPECT images.

机译:衰减补偿的201 201 SPECT图像的180度和360度采集比较。

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This study compared attenuation compensated, myocardial SPECT images reconstructed from 180 degrees and 360 degrees data to determine if either data acquisition method might yield improved image quality. Specifically, this study analyzed how the use of either 180 degrees or 360 degrees data affects: (a) the relative count density distribution, (b) defect contrast and (c) level of statistical noise in the left ventricular (LV) wall in the reconstructed SPECT images. METHODS: Using the three-dimensional MCAT phantom simulating 201Tl uptake in the upper torso and the SIMSET Monte Carlo code, noise-free projection datasets for both 180 degrees (45 degrees LPO to 45 degrees RAO) and 360 degrees acquisition were generated with the effects of nonuniform attenuation, collimator-detector response and scatter. In addition, low-noise experimental phantom data were acquired over 180 degrees and 360 degrees. Assuming the same total acquisition time, four sets of noisy projection data were simulated from scaled noise-free, simulated data for the following acquisitions: (a) 180 degrees and (b) 360 degrees data acquired on a 90 degrees dual-detector system and (c) 180 degrees and (d) 360 degrees data acquired on a 120 degrees triple-detector system. For each of the four acquisition schemes, 400 realizations of noisy projection data were generated, and the normalized s.d. in the reconstructed images was calculated for five ROIs in the LV wall. Images were reconstructed with nonuniform attenuation compensation using ML-EM algorithm for 25, 50 and 75 iterations. RESULTS: Both the simulated noise-free and experimental low-noise images reconstructed from 180 degrees and 360 degrees data showed nearly identical count densities and defect contrasts in the LV wall. For the 90 degrees dual-detector system, 180 degrees images showed less noise, while for the 120 degrees triple-detector system, 360 degrees showed less noise; however, these differences in noise level were extremely small after a smoothing filter was applied. The 180 degrees images acquired with the 90 degrees dual-detector system showed the same noise level as the 360 degrees images acquired with the 120 degrees triple-detector system, so neither system geometry had an advantage with respect to reduced noise in the SPECT images. CONCLUSION: When nonuniform attenuation compensation is included in the reconstruction, the count density in the LV wall is nearly identical for 180 degrees and 360 degrees SPECT images, and the 90 degrees dual-detector and 120 degrees triple-detector SPECT systems produced similar SPECT images for the same total acquisition time.
机译:这项研究比较了从180度和360度数据重建的衰减补偿的心肌SPECT图像,以确定任何一种数据采集方法是否都能产生改善的图像质量。具体而言,这项研究分析了180度或360度数据的使用如何影响:(a)相对计数密度分布,(b)缺陷对比和(c)左心室(LV)壁中的统计噪声水平重建的SPECT图像。方法:使用三维MCAT幻像模拟上躯干中的201Tl摄取和SIMSET蒙特卡洛代码,生成具有180度(45度LPO至45度RAO)和360度采集的无噪声投影数据集,并具有效果非均匀衰减,准直仪-探测器的响应和散射。另外,在180度和360度范围内采集了低噪声实验体模数据。假设总采集时间相同,则针对以下采集从比例缩放的无噪声模拟数据中模拟出四组噪声投影数据:(a)180度;(b)在90度双探测器系统上采集的360度数据;以及(c)在120度三探测器系统上获取的180度和(d)360度数据。对于这四个采集方案中的每一个,都生成了400个带噪投影数据的实现,并标准化了s.d。针对左室壁的五个ROI计算了重建图像中的。使用ML-EM算法,使用非均匀衰减补偿重建图像,进行25、50和75次迭代。结果:从180度和360度数据重建的模拟无噪声和实验性低噪声图像在LV壁中均显示出几乎相同的计数密度和缺陷对比度。对于90度双探测器系统,180度图像显示较少的噪声,而对于120度三探测器系统,360度显示较少的噪声;但是,在应用平滑滤波器后,这些噪声水平的差异非常小。用90度双探测器系统采集的180度图像显示的噪声水平与使用120度三探测器系统采集的360度图像的噪声水平相同,因此,相对于SPECT图像中减少的噪声,这两种系统都没有优势。结论:当重建中包含非均匀衰减补偿时,对于180度和360度SPECT图像,LV壁中的计数密度几乎相同,并且90度双探测器和120度三探测器SPECT系统产生相似的SPECT图像。相同的总采集时间。

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