Numano Tomokazu, Mizuhara Kazuyuki, Hata Junichi, Washio Toshikatsu, Homma Kazuhiro
Department of Radiological Science, Graduate School of Human Health Science, Tokyo Metropolitan University, 7-2-10, Higashiogu, Arakawa-ku, Tokyo, Japan; Human Technology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST).
Department of Mechanical Engineering, Tokyo Denki University.
Magn Reson Imaging. 2015 Jan;33(1):31-7. doi: 10.1016/j.mri.2014.10.002. Epub 2014 Oct 13.
To demonstrate the feasibility of a novel MR elastography (MRE) technique based on a conventional gradient-echo type multi-echo MR sequence which does not need additional bipolar magnetic field gradients (motion encoding gradient: MEG), yet is sensitive to vibration. In a gradient-echo type multi-echo MR sequence, several images are produced from each echo of the train with different echo times (TEs). If these echoes are synchronized with the vibration, each readout's gradient lobes achieve a MEG-like effect, and the later generated echo causes a greater MEG-like effect. The sequence was tested for the tissue-mimicking agarose gel phantoms and the psoas major muscles of healthy volunteers. It was confirmed that the readout gradient lobes caused an MEG-like effect and the later TE images had higher sensitivity to vibrations. The magnitude image of later generated echo suffered the T2 decay and the susceptibility artifacts, but the wave image and elastogram of later generated echo were unaffected by these effects. In in vivo experiments, this method was able to measure the mean shear modulus of the psoas major muscle. From the results of phantom experiments and volunteer studies, it was shown that this method has clinical application potential.
为了证明一种基于传统梯度回波型多回波磁共振序列的新型磁共振弹性成像(MRE)技术的可行性,该技术不需要额外的双极磁场梯度(运动编码梯度:MEG),但对振动敏感。在梯度回波型多回波磁共振序列中,从具有不同回波时间(TE)的回波链中的每个回波产生多个图像。如果这些回波与振动同步,则每个读出的梯度波瓣会产生类似MEG的效果,并且较晚产生的回波会产生更大的类似MEG的效果。该序列在组织模拟琼脂糖凝胶体模和健康志愿者的腰大肌上进行了测试。证实读出梯度波瓣产生了类似MEG的效果,并且较晚TE图像对振动具有更高的敏感性。较晚产生的回波的幅度图像受到T2衰减和磁化率伪影的影响,但较晚产生的回波的波图像和弹性图不受这些影响。在体内实验中,该方法能够测量腰大肌的平均剪切模量。从体模实验和志愿者研究的结果表明,该方法具有临床应用潜力。