Department of Radiation Oncology, University of Michigan, Ann Arbor, Michigan, USA.
Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.
Magn Reson Med. 2018 Mar;79(3):1345-1353. doi: 10.1002/mrm.26782. Epub 2017 Jun 15.
Respiratory motion can affect pharmacokinetic perfusion parameters quantified from liver dynamic contrast-enhanced MRI. Image registration can be used to align dynamic images after reconstruction. However, intra-image motion blur remains after alignment and can alter the shape of contrast-agent uptake curves. We introduce a method to correct for inter- and intra-image motion during image reconstruction.
Sixteen liver dynamic contrast-enhanced MRI examinations of nine subjects were performed using a golden-angle stack-of-stars sequence. For each examination, an image time series with high temporal resolution but severe streak artifacts was reconstructed. Images were aligned using region-limited rigid image registration within a region of interest covering the liver. The transformations resulting from alignment were used to correct raw data for motion by modulating and rotating acquired lines in k-space. The corrected data were then reconstructed using view sharing.
Portal-venous input functions extracted from motion-corrected images had significantly greater peak signal enhancements (mean increase: 16%, t-test, P < 0.001) than those from images aligned using image registration after reconstruction. In addition, portal-venous perfusion maps estimated from motion-corrected images showed fewer artifacts close to the edge of the liver.
Motion-corrected image reconstruction restores uptake curves distorted by motion. Motion correction also reduces motion artifacts in estimated perfusion parameter maps. Magn Reson Med 79:1345-1353, 2018. © 2017 International Society for Magnetic Resonance in Medicine.
呼吸运动可影响从肝脏动态对比增强 MRI 量化的药代动力学灌注参数。图像配准可用于在重建后对齐动态图像。然而,在对齐后仍然存在图像内运动模糊,这可能会改变对比剂摄取曲线的形状。我们介绍了一种在图像重建过程中校正图像内和图像间运动的方法。
对 9 名受试者的 16 例肝脏动态对比增强 MRI 检查进行了研究,使用黄金角星形堆叠序列。对于每次检查,重建了具有高时间分辨率但存在严重条纹伪影的图像时间序列。使用感兴趣区域内的区域限制刚性图像配准来对齐图像,该区域覆盖肝脏。对齐产生的变换用于通过调制和旋转采集的 k 空间中的线来校正原始数据的运动。然后使用视图共享重建校正后的数据。
从运动校正图像中提取的门静脉输入功能的峰值信号增强明显更大(平均增加:16%,t 检验,P < 0.001),比在重建后使用图像配准对齐的图像中的峰值信号增强更高。此外,从运动校正图像中估计的门静脉灌注图显示,靠近肝脏边缘的运动伪影更少。
运动校正图像重建可恢复因运动而扭曲的摄取曲线。运动校正还可减少估计的灌注参数图中的运动伪影。磁共振医学 79:1345-1353, 2018. © 2017 国际磁共振学会。