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一种用于海胆骨骼的新型计算生长模型。

A new computational growth model for sea urchin skeletons.

作者信息

Zachos Louis G

机构信息

Department of Paleobiology MRC-121, National Museum of Natural History, Smithsonian Institution, PO Box 37012, Washington, DC 20013-7012, USA.

出版信息

J Theor Biol. 2009 Aug 7;259(3):646-57. doi: 10.1016/j.jtbi.2009.04.007. Epub 2009 Apr 17.

Abstract

A new computational model has been developed to simulate growth of regular sea urchin skeletons. The model incorporates the processes of plate addition and individual plate growth into a composite model of whole-body (somatic) growth. A simple developmental model based on hypothetical morphogens underlies the assumptions used to define the simulated growth processes. The data model is based on a Delaunay triangulation of plate growth center points, using the dual Voronoi polygons to define plate topologies. A spherical frame of reference is used for growth calculations, with affine deformation of the sphere (based on a Young-Laplace membrane model) to result in an urchin-like three-dimensional form. The model verifies that the patterns of coronal plates in general meet the criteria of Voronoi polygonalization, that a morphogen/threshold inhibition model for plate addition results in the alternating plate addition pattern characteristic of sea urchins, and that application of the Bertalanffy growth model to individual plates results in simulated somatic growth that approximates that seen in living urchins. The model suggests avenues of research that could explain some of the distinctions between modern sea urchins and the much more disparate groups of forms that characterized the Paleozoic Era.

摘要

一种新的计算模型已被开发出来,用于模拟规则海胆骨骼的生长。该模型将板添加和单个板生长过程纳入全身(体细胞)生长的复合模型中。一个基于假设形态发生素的简单发育模型构成了用于定义模拟生长过程的假设基础。数据模型基于板生长中心点的德劳内三角剖分,使用对偶的沃罗诺伊多边形来定义板拓扑结构。生长计算使用球形参考系,通过球体的仿射变形(基于杨氏-拉普拉斯膜模型)来生成类似海胆的三维形态。该模型验证了冠状板的模式总体上符合沃罗诺伊多边形化的标准,用于板添加的形态发生素/阈值抑制模型会产生海胆特有的交替板添加模式,并且将贝塔朗菲生长模型应用于单个板会产生近似于活海胆的模拟体细胞生长。该模型提出了一些研究途径,这些途径可以解释现代海胆与代表古生代的更为不同的形态群之间的一些差异。

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