Wang Shang, Larina Irina V
Department of Biomedical Engineering, Stevens Institute of Technology, Hoboken, NJ 07030, USA.
Department of Integrative Physiology, Baylor College of Medicine, Houston, TX 77030, USA.
J Cardiovasc Dev Dis. 2022 Aug 15;9(8):267. doi: 10.3390/jcdd9080267.
In vertebrates, the coordinated beat of the early heart tube drives cardiogenesis and supports embryonic growth. How the heart pumps at this valveless stage marks a fascinating problem that is of vital significance for understanding cardiac development and defects. The developing heart achieves its function at the same time as continuous and dramatic morphological changes, which in turn modify its pumping dynamics. The beauty of this muti-time-scale process also highlights its complexity that requires interdisciplinary approaches to study. High-resolution optical imaging, particularly fast, four-dimensional (4D) imaging, plays a critical role in revealing the process of pumping, instructing numerical modeling, and enabling biomechanical analyses. In this review, we aim to connect the investigation of valveless pumping mechanisms with the recent advancements in embryonic cardiodynamic imaging, facilitating interactions between these two areas of study, in hopes of encouraging and motivating innovative work to further understand the early heartbeat.
在脊椎动物中,早期心脏管的协调搏动驱动心脏发生并支持胚胎生长。在这个无瓣膜阶段心脏如何泵血是一个引人入胜的问题,对于理解心脏发育和缺陷至关重要。发育中的心脏在持续且显著的形态变化的同时实现其功能,而这些形态变化反过来又会改变其泵血动力学。这个多时间尺度过程的美妙之处也凸显了其复杂性,这需要跨学科方法来研究。高分辨率光学成像,尤其是快速的四维(4D)成像,在揭示泵血过程、指导数值建模以及进行生物力学分析方面发挥着关键作用。在本综述中,我们旨在将无瓣膜泵血机制的研究与胚胎心脏动力学成像的最新进展联系起来,促进这两个研究领域之间的互动,希望鼓励和推动创新性工作以进一步了解早期心跳。