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3D imaging, registration, and analysis of the early mouse embryonic vasculature

机译:3D成像,登记和分析早期鼠标胚胎脉管系统

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Background: Cardiovascular development requires the input of a large number of molecular signaling molecules, and undergoes tightly regulated, three-dimensional developmental patterning. Conventional developmental biology techniques have successfully identified many of the signaling cascades and molecular cues necessary for proper cardiovascular development, which has furnished us with a wealth of biochemical, molecular, and biologically functional information on how tightly linked cardiac and vascular development are. Still missing, however, is a genuine appreciation of the three-dimensional (3D) nature of these important developmental steps. Results: Optical projection tomography (OPT) is a 3D imaging technique that allows for high-resolution imaging of early mouse embryos and their developing cardiovascular systems when a PECAM-1 antibody stain is used to highlight the vascular branching. Reported here is a method in which several 3D images of mouse embryo vasculatures can be registered, thus allowing for analysis of within-strain variance between genetically identical mouse pups. Post-registration, small differences in somitogenesis and ventricular trabeculation patterning can be visualized in mouse pups that differ by as little as a few hours of gestational time. Additionally, similarity metrics (cross-correlation values) can be calculated to quantify similarities and differences. Two different mouse strains are analyzed (C57Bl/6 and CD-1), and similar results are recognized in each strain. Conclusions: Visualizing the cardiovascular system in such a precise 3D manner allows for more accuracy in describing the steps that take place during cardiovascular development. This novel method will be applicable to many developmental biology questions in other organ systems and other species.
机译:背景:心血管发展需要输入大量分子信号分子,并经历紧密调节,三维发育模式。传统的发育生物学技术已经成功地确定了适当的心血管发育所需的许多信号级联和分子提示,这为我们提供了丰富的生化,分子和生物学功能信息,了解心脏和血管发育的紧密相关性。然而,仍然缺失是对这些重要发展步骤的三维(3D)性质的真正欣赏。结果:光学投影断层扫描(OPT)是一种3D成像技术,其允许当PECAM-1抗体染色突出血管支化时,允许早期小鼠胚胎和其显影心血管系统的高分辨率成像。这里报道的是一种方法,其中可以注册小鼠胚胎血管的几个3D图像,从而允许分析遗传上相同的小鼠幼崽之间的应变差异。在登记后,在小鼠幼崽中可以在鼠标幼仔中视为几小时的妊娠期差异的小差异。另外,可以计算相似度量(交叉相关值)以量化相似性和差异。分析了两种不同的小鼠菌株(C57BL / 6和CD-1),并且在每个菌株中识别出类似的结果。结论:以这种精确的3D方式可视化心血管系统,允许更准确地描述在心血管发育过程中发生的步骤。这种新方法将适用于其他器官系统和其他物种的许多发育生物学问题。

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