Merchant Samer S, Kosaka Yasuhiro, Yost H Joseph, Hsu Edward W, Brunelli Luca
Small Animal Imaging Facility, Department of Bioengineering, University of Utah.
Circ J. 2016 Jul 25;80(8):1795-803. doi: 10.1253/circj.CJ-16-0180. Epub 2016 Jun 15.
Ventricular non-compaction is characterized by a thin layer of compact ventricular myocardium and it is an important abnormality in the mouse heart. It is reminiscent of left ventricular non-compaction, a fairly common human congenital cardiomyopathy. Non-compaction in transgenic mice has been classically evaluated by measuring the thickness of the compact myocardium through histological techniques involving image analysis of 2-dimensional (D) sections. Given the 3D nature of the heart, the aim of this study was to determine whether a technique for the non-destructive, 3D assessment of the mouse embryonic compact myocardium could be developed.
Micro-computed tomography (micro-CT), in combination with iodine staining, enabled the differentiation of the trabecular from the compact myocardium in wild-type mice. The 3D and digital nature of the micro-CT data allowed computation anatomical techniques to be readily applied, which were demonstrated via construction of group atlases and atlas-based descriptive statistics. Finally, micro-CT was used to identify the presence of non-compaction in mice with a deletion of the cell cycle inhibitor protein, p27(Kip1).
Iodine staining-enhanced micro-CT with computational anatomical analysis represents a valid addition to classical histology for the delineation of compact myocardial wall thickness in the mouse embryo. Given the quantitative 3D resolution of micro-CT, these approaches might provide helpful information for the analysis of non-compaction. (Circ J 2016; 80: 1795-1803).
心室致密化不全的特征是心室致密心肌层较薄,是小鼠心脏的一种重要异常情况。它让人联想到左心室致密化不全,这是一种相当常见的人类先天性心肌病。转基因小鼠中的致密化不全传统上是通过组织学技术测量致密心肌厚度来评估的,该技术涉及对二维(2D)切片的图像分析。鉴于心脏的三维性质,本研究的目的是确定是否可以开发一种用于对小鼠胚胎致密心肌进行无损三维评估的技术。
微计算机断层扫描(micro-CT)结合碘染色,能够区分野生型小鼠小梁心肌和致密心肌。micro-CT数据的三维和数字特性使得计算解剖技术能够轻松应用,通过构建群体图谱和基于图谱的描述性统计得以证明。最后,利用micro-CT鉴定细胞周期抑制蛋白p27(Kip1)缺失小鼠中致密化不全的存在情况。
碘染色增强的micro-CT结合计算解剖分析是对经典组织学的有效补充,可用于描绘小鼠胚胎致密心肌壁厚度。鉴于micro-CT的定量三维分辨率,这些方法可能为致密化不全的分析提供有用信息。(《循环杂志》2016年;80:1795 - 1803)