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脊椎动物肢体软骨形成的计算模型和数学模型。

Computational and mathematical models of chondrogenesis in vertebrate limbs.

作者信息

Glimm T, Headon D, Kiskowski M A

机构信息

Department of Mathematics, Western Washington University, Bellingham, WA 98225, USA.

出版信息

Birth Defects Res C Embryo Today. 2012 Jun;96(2):176-92. doi: 10.1002/bdrc.21014.

Abstract

The production of cartilage (chondrogenic patterning) in the limb is one of the best-studied examples of the emergence of form in developmental biology. At the core of the theoretical study is an effort to understand the mechanism that establishes the characteristic distribution of cartilage in the embryonic limb, which defines the future sites and shapes of bones that will be present in the mature limb. This review article gives an overview of the history and current state of a rich literature of mathematical and computational models that seek to contribute to this problem. We describe models for the mechanisms of limb growth and shaping via interaction with various chemical fields, as well as models addressing the intrinsic self-organization capabilities of the embryonic mesenchymal tissue, such as reaction-diffusion and mechanochemical models. We discuss the contributions of these models to the current understanding of chondrogenesis in vertebrate limbs, as well as their relation to the varied conceptual models that have been proposed by experimentalists.

摘要

肢体中软骨的生成(软骨形成模式)是发育生物学中形态形成研究得最为透彻的例子之一。理论研究的核心在于努力理解在胚胎肢体中建立软骨特征分布的机制,这种分布定义了成熟肢体中将会出现的骨骼的未来位置和形状。这篇综述文章概述了大量数学和计算模型的历史与现状,这些模型旨在为解决这个问题做出贡献。我们描述了通过与各种化学场相互作用来实现肢体生长和塑形机制的模型,以及涉及胚胎间充质组织内在自组织能力的模型,如反应扩散模型和机械化学模型。我们讨论了这些模型对当前脊椎动物肢体软骨形成理解的贡献,以及它们与实验学家提出的各种概念模型之间的关系。

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