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Analysis and correction of background velocity offsets in phase-contrast flow measurements using magnetic field monitoring

机译:使用磁场监测的相衬流量测量中背景速度偏移的分析和校正

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摘要

The value of phase-contrast magnetic resonance imaging for quantifying tissue motion and blood flow has been long recognized. However, the sensitivity of the method to system imperfections can lead to inaccuracies limiting its clinical acceptance. A key source of error relates to eddy current-induced phase fluctuations, which can offset the measured object velocity significantly. A higher-order dynamic field camera was used to study the spatiotemporal evolution of background phases in cine phase-contrast measurements. It is demonstrated that eddy current-induced offsets in phase-difference data are present up to the second spatial order. Oscillatory temporal behaviors of offsets in the kHz range suggest mechanical resonances of the MR system to be non-negligible in phase-contrast imaging. By careful selection of the echo time, their impact can be significantly reduced. When applying field monitoring data for correcting eddy current and mechanically induced velocity offsets, errors decrease to less than 0.5% of the maximum velocity for various sequence settings proving the robustness of the correction approach. In vivo feasibility is demonstrated for aortic and pulmonary flow measurements in five healthy subjects. Using field monitoring data, mean error in stroke volume was reduced from 10% to below 3%. Magn Reson Med, 2012. (c) 2011 Wiley Periodicals, Inc.
机译:人们早已认识到相衬磁共振成像用于量化组织运动和血流的价值。但是,该方法对系统缺陷的敏感性可能导致不准确,从而限制了其临床可接受性。误差的主要来源与涡流引起的相位波动有关,后者可能会大大抵消所测物体的速度。在电影相位对比测量中,使用了高阶动态场相机来研究背景相位的时空演变。证明了在相位差数据中由涡流引起的偏移存在于第二空间级。在kHz范围内的偏移的振荡时间行为表明,MR系统的机械共振在相衬成像中不可忽略。通过仔细选择回波时间,可以显着降低其影响。当应用现场监测数据来校正涡流和机械感应的速度偏移时,对于各种顺序设置,误差减小到小于最大速度的0.5%,证明了校正方法的鲁棒性。在五个健康受试者中证明了在体内进行主动脉和肺血流测量的可行性。使用现场监测数据,中风量的平均误差从10%降低到3%以下。 Magn Reson Med,2012年。(c)2011 Wiley Periodicals,Inc.

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