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首页> 外文期刊>Nuclear Medicine Communications >Evaluation of reconstruction techniques in regional cerebral blood flow SPECT using trade-off plots: A Monte Carlo study.
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Evaluation of reconstruction techniques in regional cerebral blood flow SPECT using trade-off plots: A Monte Carlo study.

机译:使用权衡图评估局部脑血流SPECT中的重建技术:蒙特卡洛研究。

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BACKGROUND AND AIM: The image quality of single photon emission computed tomography (SPECT) depends on the reconstruction algorithm used. The purpose of the present study was to evaluate parameters in ordered subset expectation maximization (OSEM) and to compare systematically with filtered back-projection (FBP) for reconstruction of regional cerebral blood flow (rCBF) SPECT, incorporating attenuation and scatter correction. METHODS: The evaluation was based on the trade-off between contrast recovery and statistical noise using different sizes of subsets, number of iterations and filter parameters. Monte Carlo simulated SPECT studies of a digital human brain phantom were used. The contrast recovery was calculated as measured contrast divided by true contrast. Statistical noise in the reconstructed images was calculated as the coefficient of variation in pixel values. RESULTS: A constant contrast level was reached above 195 equivalent maximum likelihood expectation maximization iterations. The choice ofsubset size was not crucial as long as there were >/=2 projections per subset. The OSEM reconstruction was found to give 5-14% higher contrast recovery than FBP for all clinically relevant noise levels in rCBF SPECT. The Butterworth filter, power 6, achieved the highest stable contrast recovery level at all clinically relevant noise levels. The cut-off frequency should be chosen according to the noise level accepted in the image. CONCLUSION: Trade-off plots are shown to be a practical way of deciding the number of iterations and subset size for the OSEM reconstruction and can be used for other examination types in nuclear medicine.
机译:背景与目的:单光子发射计算机断层扫描(SPECT)的图像质量取决于所使用的重建算法。本研究的目的是评估有序子集期望最大化(OSEM)中的参数,并与过滤后向投影(FBP)进行系统比较,以结合衰减和散射校正来重建局部脑血流(rCBF)SPECT。方法:评估是基于对比度恢复与统计噪声之间的权衡,其中使用了不同大小的子集,迭代次数和过滤器参数。使用了蒙特卡罗模拟的数字人脑幻影的SPECT研究。对比度恢复计算为实测对比度除以真实对比度。计算重建图像中的统计噪声作为像素值的变化系数。结果:在195个等效最大似然期望最大化迭代之上达到了恒定的对比度水平。只要每个子集有> / = 2个投影,就不必选择子集大小。对于rCBF SPECT中所有临床相关的噪声水平,发现OSEM重建的对比度恢复率比FBP高5-14%。在所有与临床相关的噪声水平下,功率为6的巴特沃斯滤波器均实现了最高的稳定对比度恢复水平。截止频率应根据图像接受的噪声水平选择。结论:折衷图被证明是确定OSEM重建的迭代次数和子集大小的实用方法,并且可以用于核医学中的其他检查类型。

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