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首页> 外文期刊>Iranian Journal of Nuclear Medicine >Assessment of the impact of applying attenuation correction on the accuracy of activity recovery in Tc99m-ECD brain SPECT of healthy subject using Statistical Parametric Mapping (SPM)
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Assessment of the impact of applying attenuation correction on the accuracy of activity recovery in Tc99m-ECD brain SPECT of healthy subject using Statistical Parametric Mapping (SPM)

机译:使用统计参数映射(SPM)评估应用衰减校正对健康受试者Tc99m-ECD脑SPECT中活动恢复的准确性的影响

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Introduction: Photon attenuation in tissues is the primary physical degrading factor limiting both visual qualitative interpretation and quantitative analysis capabilities of reconstructed Single Photon Emission Computed Tomography (SPECT) images. The aim of present study was to investigate the effect of attenuation correction on the detection of activation foci following statistical analysis with SPM. Methods: The study population consisted of twenty normal subjects (11 male, 9 female, and age 30-40 years). SPECT images were reconstructed using filter back projection and attenuation correction was done by the Chang method. The SPECT imagings was obtained 20 min after intravenous injection of 740-1110 MBq (20-30 mCi) of Tc99m-ECD and were acquired on 128×128 matrices with a 20% symmetric energy window at 140 keV. These data publicly distributed by the Society of Nuclear Medicine of Toronto Hospital. The data was standardized with respect to the Montreal Neurological Institute (MNI) atlas with a 12 parameter affine transformations. Images were then smoothed by a Gaussian filter of 10 mm FWHM. Significance differences between SPECT images were estimated at every voxel using statistical t-test and p-value as the significant criteria was set at 0.05. Results: The contrast comparing non attenuation corrected to attenuation corrected images suggest that regional brain perfusion activity increase in the cerebrum, frontal (T-value 12.06) , temporal (T-value 10.63) and occipital (T-value 9.31) lobe and decrease in the sub-lobar, extra-nuclear (T-value 17.46) and limbic lobe, posterior cingulate (T-value 17.46) before attenuation correction compare with attenuation correction. Conclusion: It can be concluded that applying attenuation correction in brain SPECT can effectively improve the accuracy of the detection of activation area (p
机译:简介:组织中的光子衰减是限制重建的单光子发射计算机断层扫描(SPECT)图像的视觉定性解释和定量分析功能的主要物理退化因素。本研究的目的是在通过SPM进行统计分析后,研究衰减校正对激活灶检测的影响。方法:研究人群包括二十名正常受试者(男11例,女9例,年龄30-40岁)。使用滤波器反投影重建SPECT图像,并通过Chang方法进行衰减校正。 SPECT成像是在静脉注射740-1110 MBq(20-30 mCi)的Tc99m-ECD后20分钟获得的,并在128kex矩阵上以140keV在20%对称能量窗口下采集。这些数据由多伦多医院核医学协会公开分发。数据是根据蒙特利尔神经病学研究所(MNI)地图集进行标准化的,其中包含12个参数的仿射变换。然后通过10 mm FWHM的高斯滤波器对图像进行平滑处理。使用统计t检验和p值(每个显着性标准设为0.05)估算每个体素的SPECT图像之间的显着性差异。结果:对比非衰减校正图像和衰减校正图像的对比结果表明,区域性脑灌注活动在大脑,额叶(T值12.06),颞叶(T值10.63)和枕叶(T值9.31)增加,而在大脑的额叶减少。衰减校正前的亚大叶核外(T值17.46)和边缘叶后扣带回(T值17.46)与衰减校正比较。结论:可以得出结论,在脑SPECT中应用衰减校正可以有效地提高激活区域检测的准确性(p

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