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Attenuation correction of cardiac perfusion images in SPECT using Compton scatter data: a Monte Carlo investigation

机译:使用康普顿散射数据在SPECT中进行心脏灌注图像的衰减校正:蒙特卡洛研究

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Attenuation correction of SPECT cardiac perfusion images requires a patient-specific attenuation map. Such a map can be estimated from segmenting both the Compton scatter and photopeak data to identify the regions of the lungs and other soft tissues, and assigning appropriate attenuation coefficients to the regions. Using simulated images produced by Monte Carlo techniques, we have previously demonstrated that a reasonable segmentation can be obtained. This work was extended to investigate the relative accuracy of attenuation correction applied to Monte Carlo images using such maps, with respect to correction with the true attenuation maps. Results demonstrated that the regions of the lungs segmented in the Compton scatter window images were smaller in size than the true lungs by about 17 to 28%. However, this error did not create a significant bias in the polar maps. The bias was seen primarily in the anterior septal region near the base of the heart.
机译:SPECT心脏灌注图像的衰减校正需要患者特定的衰减图。可以通过分割康普顿散射数据和光峰数据以识别肺和其他软组织的区域,并为这些区域分配适当的衰减系数,来估计这样的图。使用由蒙特卡洛技术产生的模拟图像,我们先前已经证明可以获得合理的分割。这项工作已扩展到调查使用此类映射应用于蒙特卡洛图像的衰减校正相对于真实衰减图的校正的相对精度。结果表明,在康普顿散射窗口图像中分割的肺区域的尺寸比真实的肺小了约17%至28%。但是,此错误不会在极坐标图中产生明显的偏差。偏见主要见于心脏底部附近的前中隔区域。

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