...
首页> 外文期刊>The Journal of Nuclear Medicine >MRI-Based Attenuation Correction for PET/MRI: A Novel Approach Combining Pattern Recognition and Atlas Registration
【24h】

MRI-Based Attenuation Correction for PET/MRI: A Novel Approach Combining Pattern Recognition and Atlas Registration

机译:基于MRI的PET / MRI衰减校正:一种结合模式识别和Atlas配准的新方法

获取原文

摘要

id="p-1">For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in conventional PET, the attenuation map is obtained from a transmission scan, which uses a rotating radionuclide source, or from the CT scan in a combined PET/CT scanner. In the case of PET/MRI scanners currently under development, insufficient space for the rotating source exists; the attenuation map can be calculated from the MR image instead. This task is challenging because MR intensities correlate with proton densities and tissue-relaxation properties, rather than with attenuation-related mass density. >Methods: We used a combination of local pattern recognition and atlas registration, which captures global variation of anatomy, to predict pseudo-CT images from a given MR image. These pseudo-CT images were then used for attenuation correction, as the process would be performed in a PET/CT scanner. >Results: For human brain scans, we show on a database of 17 MR/CT image pairs that our method reliably enables estimation of a pseudo-CT image from the MR image alone. On additional datasets of MRI/PET/CT triplets of human brain scans, we compare MRI-based attenuation correction with CT-based correction. Our approach enables PET quantification with a mean error of 3.2% for predefined regions of interest, which we found to be clinically not significant. However, our method is not specific to brain imaging, and we show promising initial results on 1 whole-body animal dataset. >Conclusion: This method allows reliable MRI-based attenuation correction for human brain scans. Further work is necessary to validate the method for whole-body imaging.
机译:id =“ p-1”>对于定量PET信息,必须校正组织光子衰减。通常,在常规的PET中,衰减图是从使用旋转放射性核素源的透射扫描或组合PET / CT扫描仪中的CT扫描获得的。对于目前正在开发的PET / MRI扫描仪,旋转源的空间不足;可以从MR图像计算出衰减图。该任务具有挑战性,因为MR强度与质子密度和组织松弛特性相关,而不是与衰减相关的质量密度相关。 >方法:我们结合了局部模式识别和地图集配准(可捕获整体解剖结构变化),从给定的MR图像中预测伪CT图像。然后将这些伪CT图像用于衰减校正,因为该过程将在PET / CT扫描仪中执行。 >结果:对于人脑扫描,我们在包含17个MR / CT图像对的数据库中显示,我们的方法可靠地支持仅从MR图像估计伪CT图像。在人脑扫描的MRI / PET / CT三胞胎的其他数据集上,我们将基于MRI的衰减校正与基于CT的校正进行了比较。我们的方法能够对预定义的目标区域进行PET定量,平均误差为3.2%,我们发现这在临床上并不重要。但是,我们的方法并非专门针对大脑成像,并且我们在1个全身动物数据集上显示了令人鼓舞的初步结果。 >结论:此方法可对人脑扫描进行基于MRI的可靠衰减校正。需要进一步的工作来验证用于全身成像的方法。

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