Department of Medical Biophysics, University of Toronto, Toronto, Ontario, Canada.
Magn Reson Med. 2010 Nov;64(5):1304-14. doi: 10.1002/mrm.22542.
Phase-contrast magnetic resonance imaging can be used to complement echocardiography for the evaluation of the fetal heart. Cardiac imaging typically requires gating with peripheral hardware; however, a gating signal is not readily available in utero. No successful application of existing technologies to human fetal phase-contrast magnetic resonance imaging has been reported to date in the literature. The purpose of this work is to develop a technique for phase-contrast magnetic resonance imaging of the fetal heart that does not require measurement of a gating signal. Metric optimized gating involves acquiring data without gating and retrospectively determining the proper reconstruction by optimizing an image metric. The effects of incorrect gating on phase contrast images were investigated, and the time-entropy of the series of images was found to provide a good measure of the level of corruption. The technique was validated with a pulsatile flow phantom, experiments with adult volunteers, and in vivo application in the fetal population. Images and flow curves from these measurements are presented. Additionally, numerical simulations were used to investigate the degree to which heart rate variability affects the reconstruction process. Metric optimized gating enables imaging with conventional phase-contrast magnetic resonance imaging sequences in the absence of a gating signal, permitting flow measurements in the great vessels in utero.
相位对比磁共振成像是一种可以补充超声心动图评估胎儿心脏的方法。心脏成像通常需要使用外围硬件进行门控;然而,在子宫内很难获得门控信号。迄今为止,文献中尚未报道任何成功将现有技术应用于人体胎儿相位对比磁共振成像的情况。本研究旨在开发一种无需测量门控信号即可进行胎儿心脏相位对比磁共振成像的技术。度量优化门控涉及在没有门控的情况下获取数据,并通过优化图像度量来回顾性确定正确的重建。研究了不正确的门控对相位对比图像的影响,发现图像序列的时间熵可以很好地衡量图像的损坏程度。该技术在脉动流体模型、成人志愿者实验以及胎儿群体中的体内应用中得到了验证。展示了这些测量的图像和流量曲线。此外,还使用数值模拟研究了心率变异性对重建过程的影响程度。度量优化门控使得可以在没有门控信号的情况下使用常规相位对比磁共振成像序列进行成像,从而可以在子宫内测量大血管中的流量。