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Morphogenesis as a macroscopic self-organizing process

机译:形态发生是宏观的自组织过程

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We start from reviewing different epistemological constructions used for explaining morphogenesis. Among them, we explore the explanatory power of a law-centered approach which includes top-down causation and the basic concepts of a self-organization theory. Within such a framework, we discuss the morphomechanical models based upon the presumption of feedbacks between mechanical stresses imposed onto a given embryo part from outside and those generated within the latter as a kind of active response. A number of elementary morphogenetic events demonstrating that these feedbacks are directed towards hyper-restoration (restoration with an overshoot) of the initial state of mechanical stresses are described. Moreover, we show that these reactions are bound together into the larger scale feedbacks. That permits to suggest a reconstruction of morphogenetic successions in early Metazoan development concentrated around two main archetypes distinguished by the blastopores geometry. The perspectives of applying the same approach to cell differentiation are outlined. By discussing the problem of positional information we suggest that the developmental pathway of a given embryo part depends upon its preceded deformations and the corresponding mechanical stresses rather than upon its static position at any moment of development.
机译:我们从回顾用于解释形态发生的不同认识论构造开始。其中,我们探讨了以法律为中心的方法的解释力,该方法包括自上而下的因果关系和自组织理论的基本概念。在这样的框架内,我们基于从外部施加到给定胚胎部分上的机械应力与在内部产生的机械应力之间的反馈作为一种主动响应之间的反馈推定来讨论形态力学模型。描述了许多基本的形态发生事件,这些事件表明这些反馈是针对机械应力初始状态的过度恢复(带有过冲的恢复)。此外,我们证明了这些反应被绑定到更大范围的反馈中。这允许建议在后生动物早期发育中重建形态发生演替,其集中在两个主要原型上,这些原型以胚芽孔的几何形状区分。概述了将相同方法应用于细胞分化的观点。通过讨论位置信息的问题,我们建议给定胚胎部分的发育途径取决于其先前的变形和相应的机械应力,而不取决于其在任何发育时刻的静态位置。

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