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Determining material properties of the embryonic chick heart during cardiac looping morphogenesis

机译:确定心脏循环形态发生过程中胚胎小鸡心脏的物质特性

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Cardiac looping is a fundamental developmental process that is the first morphogenetic sign of lateral (left-right) asymmetry in the vertebrate embryo. The biophysical mechanism that drives the early linear heart tube to bend and rotate dextrally (rightward) into a c-shaped loop is still unknown, although several genetic and epigenetic factors have been implicated. There have been some theoretical mechanical models of looping. What has been lacking in models of looping are appropriate material properties for the tissue. Our lab has developed a poking device ("heart poker"), which not only gives force-deformation (i.e. stiffness) data, but also allows us to analyze the shape of indentation and input that information into a finite element (FE) model to determine material properties. A simulated annealing (SA) algorithm is used to optimize the agreement between the experimental and model results.
机译:心脏环回是一个基本的发育过程,是脊椎动物胚胎中横向(左右)不对称的第一个形态发生标志。尽管已经牵涉到一些遗传和表观遗传因素,但驱动早期线性心管弯曲并右旋(向右)弯曲成c形环的生物物理机制仍是未知的。已有一些理论上的循环机械模型。循环模型中缺少的是用于组织的合适的材料特性。我们的实验室开发了一种戳戳设备(“心脏戳戳”),它不仅可以提供力变形(即刚度)数据,还可以让我们分析压痕的形状并将该信息输入到有限元(FE)模型中,确定材料特性。模拟退火(SA)算法用于优化实验结果与模型结果之间的一致性。

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