Raiola Morena, Sendra Miquel, Torres Miguel
Cardiovascular Regeneration Program, Centro Nacional de Investigaciones Cardiovasculares (CNIC), 28029 Madrid, Spain.
Departamento de Ingeniería Biomedica, ETSI de Telecomunicaciones, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
J Cardiovasc Dev Dis. 2023 Mar 29;10(4):145. doi: 10.3390/jcdd10040145.
Heart morphogenesis is a complex and dynamic process that has captivated researchers for almost a century. This process involves three main stages, during which the heart undergoes growth and folding on itself to form its common chambered shape. However, imaging heart development presents significant challenges due to the rapid and dynamic changes in heart morphology. Researchers have used different model organisms and developed various imaging techniques to obtain high-resolution images of heart development. Advanced imaging techniques have allowed the integration of multiscale live imaging approaches with genetic labeling, enabling the quantitative analysis of cardiac morphogenesis. Here, we discuss the various imaging techniques used to obtain high-resolution images of whole-heart development. We also review the mathematical approaches used to quantify cardiac morphogenesis from 3D and 3D+time images and to model its dynamics at the tissue and cellular levels.
心脏形态发生是一个复杂而动态的过程,近一个世纪以来一直吸引着研究人员。这个过程包括三个主要阶段,在此期间心脏自身生长并折叠,形成其常见的腔室形状。然而,由于心脏形态的快速动态变化,对心脏发育进行成像面临重大挑战。研究人员使用了不同的模式生物并开发了各种成像技术,以获得心脏发育的高分辨率图像。先进的成像技术已使多尺度实时成像方法与基因标记相结合成为可能,从而能够对心脏形态发生进行定量分析。在这里,我们讨论用于获得全心发育高分辨率图像的各种成像技术。我们还回顾了用于从三维和三维加时间图像量化心脏形态发生并在组织和细胞水平对其动力学进行建模的数学方法。