Tabata Daiki, Isoda Haruo, Kato Kaori, Matsubara Hiroki, Kosugi Takafumi, Kosugi Takashi, Terada Masaki, Fukuyama Atsushi, Komori Yoshiaki, Naganawa Shinji
Department of Radiological and Medical Laboratory Sciences, Nagoya University Graduate School of Medicine, 1-20, Daikominami 1-chome, Higashi-ku, Nagoya, Aichi, 461-8673, Japan.
Department of Radiology, Fujita Health University Hospital, 1-98, Dengakugakubo, Kutsukake-cho, Toyoake, Aichi, 470-1192, Japan.
Radiol Phys Technol. 2018 Jun;11(2):202-211. doi: 10.1007/s12194-018-0456-3. Epub 2018 Apr 12.
We developed a method of velocimetry based on an optical flow method using quantitative analyses of tagged magnetic resonance (MR) images (tagged MR-optical flow velocimetry, tMR-O velocimetry). The purpose of our study was to examine the accuracy of measurement of the proposed tMR-O velocimetry. We performed retrospective pseudo-electrocardiogram (ECG) gating tagged cine MR imaging on a rotating phantom. We optimized imaging parameters for tagged MR imaging, and validated the accuracy of tMR-O velocimetry. Our results indicated that the difference between the reference velocities and the computed velocities measured using optimal imaging parameters was less than 1%. In addition, we performed tMR-O velocimetry and echocardiography on 10 healthy volunteers, for four sections of the heart (apical, midventricular, and basal sections aligned with the short-axis, and a four-chamber section aligned with the long-axis), and obtained radial and longitudinal myocardial velocities in these sections. We compared the myocardial velocities obtained using tMR-O velocimetry with those obtained using echocardiography. Our results showed good agreement between tMR-O velocimetry and echocardiography in the radial myocardial velocities in three short-axial sections and longitudinal myocardial velocities on the midventricular portion of the four-chamber section in the long-axis. In the study conducted on the rotating phantom, tMR-O velocimetry showed high accuracy; moreover, in the healthy volunteers, the myocardial velocities obtained using tMR-O velocimetry were relatively similar to those obtained using echocardiography. In conclusion, tMR-O velocimetry is a potentially feasible method for analyzing myocardial motion in the human heart.
我们开发了一种基于光流法的测速方法,该方法利用对标记磁共振(MR)图像的定量分析(标记MR-光流测速法,tMR-O测速法)。本研究的目的是检验所提出的tMR-O测速法的测量准确性。我们在旋转体模上进行了回顾性伪心电图(ECG)门控标记电影MR成像。我们优化了标记MR成像的参数,并验证了tMR-O测速法的准确性。我们的结果表明,使用最佳成像参数测量的参考速度与计算速度之间的差异小于1%。此外,我们对10名健康志愿者进行了tMR-O测速法和超声心动图检查,针对心脏的四个切面(与短轴对齐的心尖、心室中部和基部切面,以及与长轴对齐的四腔切面),并获得了这些切面的径向和纵向心肌速度。我们将使用tMR-O测速法获得的心肌速度与使用超声心动图获得的心肌速度进行了比较。我们的结果显示,在三个短轴切面的径向心肌速度以及长轴四腔切面心室中部的纵向心肌速度方面,tMR-O测速法与超声心动图之间具有良好的一致性。在对旋转体模进行的研究中,tMR-O测速法显示出高精度;此外,在健康志愿者中,使用tMR-O测速法获得的心肌速度与使用超声心动图获得的心肌速度相对相似。总之,tMR-O测速法是一种分析人体心脏心肌运动的潜在可行方法。