Saito Shigeyoshi, Masuda Kasumi, Mori Yuki, Nakatani Satoshi, Yoshioka Yoshichika, Murase Kenya
Department of Medical Physics and Engineering, Division of Health Sciences, Osaka University Graduate School of Medicine, Suita, Osaka 565-0871, Japan; Center for Information and Neural Networks (CiNet), National Institute of Information and Communications Technology, Osaka University, Suita, Osaka 565-0871, Japan.
Department of Functional Diagnostic Science, Division of Health Sciences, Osaka University Graduate School of Medicine, Suita, Osaka 565-0871, Japan.
Magn Reson Imaging. 2017 Feb;36:128-134. doi: 10.1016/j.mri.2016.10.030. Epub 2016 Oct 28.
The left ventricle (LV) wall thickness is an important and routinely measured cardiologic parameter. Here we introduce three-dimensional (3D) mapping of LV wall thickness and function using a self-gated magnetic resonance (MR) sequence for ultra-high-field 11.7-T MR cine imaging of mouse hearts.
Six male C57BL/6-j mice were subjected to 11.7-T MR imaging (MRI). Three standard views-short axis, long axis four-chamber, and long axis two-chamber-and eight consecutive short axis scans from the apex to base were performed for each mouse. The resulting 11 self-gated cine images were used for fast low-angle shot analysis with a navigator echo over an observation period of approximately 35min. The right ventricle (RV) and LV were identified in the short axis and four-chamber views. On 3D color-coded maps, the interventricular septum wall (diastole: 0.94±0.05mm, systole: 1.20±0.09mm) and LV free wall (diastole: 1.07±0.15mm, systole: 1.79±0.11mm) thicknesses were measured.
This 3D wall thickness mapping technique can be used to observe regional wall thickness at the end-diastole and end-systole. Self-gated cine imaging based on ultra-high-field MRI can be used to accurately and easily measure cardiac function and wall thickness in normal mouse hearts. As in the preclinical study, this versatile and simple method will be clinically useful for the high-field-MRI evaluation of cardiac function and wall thickness.
左心室(LV)壁厚度是一项重要且常规测量的心脏病学参数。在此,我们介绍一种使用自门控磁共振(MR)序列对小鼠心脏进行超高场11.7-T MR电影成像的左心室壁厚度和功能的三维(3D)映射方法。
对6只雄性C57BL/6-j小鼠进行11.7-T MR成像(MRI)。对每只小鼠进行三个标准视图——短轴、长轴四腔和长轴两腔——以及从心尖到心底的8个连续短轴扫描。所得的11幅自门控电影图像用于在约35分钟的观察期内通过导航回波进行快速低角度激发分析。在短轴和四腔视图中识别右心室(RV)和左心室。在3D彩色编码图上,测量室间隔壁(舒张期:0.94±0.05mm,收缩期:1.20±0.09mm)和左心室游离壁(舒张期:1.07±0.15mm,收缩期:1.79±0.11mm)的厚度。
这种3D壁厚度映射技术可用于观察舒张末期和收缩末期的局部壁厚度。基于超高场MRI的自门控电影成像可用于准确、轻松地测量正常小鼠心脏的心脏功能和壁厚度。如同在临床前研究中一样,这种通用且简单的方法在临床上对于心脏功能和壁厚度的高场MRI评估将是有用的。