首页> 外文期刊>Physical Review X >Buckling without Bending: A New Paradigm in Morphogenesis
【24h】

Buckling without Bending: A New Paradigm in Morphogenesis

机译:没有弯曲的屈曲:形态发生的新范式

获取原文
           

摘要

A curious feature of organ and organoid morphogenesis is that in certain cases, spatial oscillations in the thickness of the growing “film” are out of phase with the deformation of the slower-growing “substrate,” while in other cases, the oscillations are in phase. The former cannot be explained by elastic bilayer instability, and contradict the notion that there is a universal mechanism by which brains, intestines, teeth, and other organs develop surface wrinkles and folds. Inspired by the microstructure of the embryonic cerebellum, we develop a new model of 2D morphogenesis in which system-spanning elastic fibers endow the organ with a preferred radius, while a separate fiber network resides in the otherwise fluidlike film at the outer edge of the organ and resists thickness gradients thereof. The tendency of the film to uniformly thicken or thin is described via a “growth potential.” Several features of cerebellum, + blebbistatin organoid, and retinal fovea morphogenesis, including out-of-phase behavior and a film thickness amplitude that is comparable to the radius amplitude, are readily explained by our simple analytical model, as may be an observed scale invariance in the number of folds in the cerebellum. We also study a nonlinear variant of the model, propose further biological and bioinspired applications, and address how our model is and is not unique to the developing nervous system.
机译:器官和有机体形态发生的奇怪特征是,在某些情况下,生长“薄膜”厚度的空间振荡与较慢的“基材”的变形异相,而在其他情况下,振动振荡阶段。前者不能通过弹性双层不稳定性解释,并将概括的概念与普遍机制相矛盾,其中大脑,肠道,牙齿和其他器官形成表面皱纹和褶皱。灵感来自胚胎小脑的微观结构,我们开发了一种新的2D形态发生模型,其中系统跨越弹性纤维具有优选的半径,而单独的纤维网络在器官外边缘处存在于其他流体状的薄膜中并抵抗其厚度梯度。通过“生长潜力”描述了膜均匀地变稠或薄的趋势。小脑,+ BLEBBISTATIN细胞体和视网膜FOVEA形态发生的若干特征,包括与半径幅度相当的相位行为和膜厚度幅度,易于通过我们的简单分析模型解释,如观察到的规模不变性在小脑中的褶皱数量。我们还研究了模型的非线性变体,提出了进一步的生物和生物透露应用,并解决了我们的模型如何,并且不属于发展神经系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号