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默克尔细胞与摩擦嵴皮肤的个体性。

Merkel cells and the individuality of friction ridge skin.

机构信息

MPI for the Physics of Complex Systems, Nöthnitzer Street 38, 01187 Dresden, Germany.

出版信息

J Theor Biol. 2013 Jan 21;317:229-37. doi: 10.1016/j.jtbi.2012.10.009. Epub 2012 Oct 16.

Abstract

There is no definite theory yet for the mechanism by which the pattern of epidermal ridges on fingers, palms and soles forming friction ridge skin (FRS) patterns is created. For a long time growth forces in the embryonal epidermis have been believed to be involved in FRS formation. More recent evidence suggests that Merkel cells play an important part in this process as well. Here we suggest a model for the formation of FRS patterns that links Merkel cells to the epidermal stress distribution. The Merkel cells are modeled as agents in an agent based model that move anisotropically where the anisotropy is created by the epidermal stress tensor. As a result ridge patterns are created with pattern defects as they occur in real FRS patterns. As a consequence we suggest why the topology of FRS patterns is indeed unique as the arrangement of pattern defects is sensitive to the initial configuration of Merkel cells.

摘要

目前还没有明确的理论来解释手指、手掌和脚底的表皮嵴形成摩擦嵴皮肤(FRS)模式的机制。长期以来,人们一直认为胚胎表皮的生长力与 FRS 的形成有关。最近的证据表明,默克尔细胞在这个过程中也起着重要的作用。在这里,我们提出了一个将默克尔细胞与表皮应力分布联系起来的 FRS 模式形成模型。默克尔细胞被建模为基于代理的模型中的代理,这些代理在各向异性的方向上移动,各向异性是由表皮应力张量产生的。结果,形成了脊图案,并且出现了与实际 FRS 图案中相同的图案缺陷。因此,我们提出了为什么 FRS 模式的拓扑结构确实是独一无二的,因为图案缺陷的排列对默克尔细胞的初始配置敏感。

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