首页> 外文会议> >A new dynamic myocardial phantom for evaluation of SPECT and PET quantitation in systolic and diastolic conditions
【24h】

A new dynamic myocardial phantom for evaluation of SPECT and PET quantitation in systolic and diastolic conditions

机译:一种用于评估收缩压和舒张压条件下SPECT和PET定量的新型动态心肌模型

获取原文

摘要

We present a new dynamic myocardial phantom designed to evaluate SPECT and PET imaging in systolic and diastolic conditions. The phantom includes a thoracic attenuating media and the myocardial wall thickness varying during the scan can be performed. In this study the phantom was used with three different wall thickness characteristic of a systolic, end-diastolic and pathologic end-diastolic condition. The myocardium was filled with /sup 99m/Tc, /sup 18/F and Gd and imaged by SPECT, PET and MRI. SPECT attenuation correction was performed using a modified PET transmission. A bull's eyes image was obtained for all data and wall ROI were then drawn for analysis. Using MRI as a reference, error from PET, SPECT and attenuation corrected SPECT were calculated. Systolic PET performances agree with MRI. Quantitation loss due to wall thickness reduction compared to the systole. Attenuation correction in SPECT leads to significant decrease of the error both in systole (from 29% to 14%) and diastole (35% to 22%). This is particularly sensitive for septum and inferior walls. SPECT residual errors (14% in systole and 22% in pathologic end-diastole) are likely caused by scatter, noise and depth dependant resolution effect. The results obtained with this dynamical phantom demonstrate the quantitation improvement achieved in SPECT with attenuation correction and also reinforce the need for variable resolution correction in addition to attenuation correction.
机译:我们提出了一种新的动态心肌模型,旨在评估收缩期和舒张期情况下的SPECT和PET成像。体模包括胸部衰减介质,并且可以执行在扫描期间变化的心肌壁厚度。在这项研究中,幻影具有收缩期,舒张末期和病理性舒张末期的三种不同壁厚特征。心肌充满/ sup 99m / Tc,/ sup 18 / F和Gd,并通过SPECT,PET和MRI进行成像。使用改进的PET传输进行SPECT衰减校正。获取所有数据的牛眼图像,然后绘制墙壁ROI进行分析。以MRI为参考,计算PET,SPECT和经衰减校正的SPECT的误差。收缩期PET表现与MRI一致。与收缩期相比,由于壁厚减小而导致的定量损失。 SPECT中的衰减校正可显着降低收缩期(从29%降低到14%)和舒张期(35%到22%)的误差。这对于隔壁和下壁特别敏感。 SPECT残留误差(收缩期为14%,病理舒张末期为22%)可能是由散射,噪声和深度相关的分辨率效应引起的。用这种动态体模获得的结果证明了通过衰减校正在SPECT中实现的定量改进,并且除了衰减校正外,还增加了对可变分辨率校正的需求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号