Filas Benjamen A, Efimov Igor R, Taber Larry A
Department of Biomedical Engineering, Washington University, St. Louis, Missouri 63130, USA.
Anat Rec (Hoboken). 2007 Sep;290(9):1057-68. doi: 10.1002/ar.20575.
Optical coherence tomography (OCT) was used to investigate morphogenesis of the embryonic chick heart during the first phase of looping (c-looping), as the heart bends and twists into a c-shaped tube. The present study focuses on the morphomechanical effects of the splanchnopleure (SPL), a membrane that has been shown to play a major role in cardiac torsion by pressing against the ventral surface of the heart. Without the SPL, rightward torsion (rotation) is delayed. The images show that compressive forces exerted by the SPL alter the shapes of the heart tube and primitive atria, as well as their spatial relationships. The SPL normally holds the heart in the plane of the embryo and forces cardiac jelly (CJ) out of adjacent regions in the atria. When the SPL is removed, cross-sections become more circular, CJ is more uniformly distributed, and the heart displaces ventrally. In addition, OCT-based morphogenetic strain maps were measured during looping by tracking the three-dimensional motions of microspheres placed on the myocardium. The spatial-temporal patterns of the strains correlated well with the observed behavior of the heart, including delayed torsion that occurs in SPL-lacking embryos. These results illustrate the potential of OCT as a tool in studies of morphogenesis, as well as provide a better understanding of the mechanical forces that drive cardiac looping.
光学相干断层扫描(OCT)被用于研究鸡胚心脏在环化第一阶段(c环化)的形态发生过程,此时心脏弯曲并扭曲成一个c形管。本研究聚焦于脏壁层(SPL)的形态力学效应,这是一种已被证明通过挤压心脏腹面在心脏扭转中起主要作用的膜。没有SPL,向右扭转(旋转)会延迟。图像显示,SPL施加的压缩力改变了心脏管和原始心房的形状及其空间关系。SPL通常将心脏保持在胚胎平面内,并迫使心胶(CJ)从心房的相邻区域排出。去除SPL后,横截面变得更圆,CJ分布更均匀,心脏向腹侧移位。此外,在环化过程中,通过跟踪放置在心肌上的微球的三维运动,测量了基于OCT的形态发生应变图。应变的时空模式与观察到的心脏行为密切相关,包括在缺乏SPL的胚胎中出现的扭转延迟。这些结果说明了OCT作为形态发生研究工具的潜力,也有助于更好地理解驱动心脏环化的机械力。