Wang Y, Riederer S J, Ehman R L
Department of Diagnostic Radiology, Mayo Clinic, Rochester, MN 55905, USA.
Magn Reson Med. 1995 May;33(5):713-9. doi: 10.1002/mrm.1910330517.
Respiratory motion is a major limiting factor in improving image resolution and signal-to-noise ratio in MR coronary imaging. In this work the effects of respiration on the cardiac position were studied quantitively by imaging the heart during diastole at various positions of tidal respiration with a breath-hold segmented fast gradient echo technique. It was found that during tidal breathing the movement of the heart due to respiration is dominated by superior-inferior (SI) motion, which is linearly related to the SI motion of the diaphragm. The motion of the heart due to respiration is approximately a global translation. These results provide motivation for employing adaptive motion correction techniques to reduce image blurring in nonbreath-hold coronary MR imaging.
呼吸运动是提高磁共振冠状动脉成像的图像分辨率和信噪比的主要限制因素。在这项研究中,采用屏气分段快速梯度回波技术,在潮气呼吸的不同位置对心脏进行舒张期成像,定量研究了呼吸对心脏位置的影响。研究发现,在潮气呼吸过程中,心脏因呼吸引起的运动以上下(SI)运动为主,且与膈肌的SI运动呈线性相关。心脏因呼吸引起的运动近似于整体平移。这些结果为采用自适应运动校正技术减少非屏气冠状动脉磁共振成像中的图像模糊提供了依据。