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手性液晶相中的单畴和多畴螺旋面及其生物类似物。

Monodomain and polydomain helicoids in chiral liquid-crystalline phases and their biological analogues.

作者信息

De Luca G, Rey A D

机构信息

Department of Chemical Engineering, McGill University, 3610 University Street, H3A 2B2, Montreal , Quebec, Canada.

出版信息

Eur Phys J E Soft Matter. 2003 Oct;12(2):291-302. doi: 10.1140/epje/i2002-10164-3.

Abstract

Many natural composites exhibit an architecture known as twisted plywood which imparts to them a superior set of physical properties. The origin of this structure is complex and not yet understood. However, it is thought to involve a lyotropic chiral nematic liquid-crystalline mesophase. Indeed, striking structural similarities have been observed and reported between biological fibrous composites and ordered fluids. In this work, a mathematical model based on the Landau-de Gennes theory has been developed to investigate the role played by constraining surfaces in the structural development of a composite material that experiences a liquid-crystalline state during the early steps of its morphogenesis. The goal of this study is to verify the need for an initial constraining surface in the formation of monodomain twisted plywoods as hypothesized by Neville (Tissue & Cell 20, 133 (1988); Biology of Fibrous Composites (Cambridge University Press, 1993)). The numerical simulations qualitatively confirm this theory and highlight the important role that modelling of liquid-crystalline self-assembly plays in the study of tissue morphogenesis.

摘要

许多天然复合材料呈现出一种被称为扭曲胶合板的结构,这种结构赋予它们一系列优异的物理性能。这种结构的起源很复杂,尚未完全理解。然而,人们认为它涉及溶致手性向列型液晶中间相。事实上,在生物纤维复合材料和有序流体之间已经观察到并报道了惊人的结构相似性。在这项工作中,基于朗道 - 德热纳理论开发了一个数学模型,以研究在复合材料形态发生的早期阶段经历液晶态时,约束表面在其结构发展中所起的作用。本研究的目的是验证内维尔(《组织与细胞》20,133(1988);《纤维复合材料生物学》(剑桥大学出版社,1993))所假设的单畴扭曲胶合板形成过程中初始约束表面的必要性。数值模拟定性地证实了这一理论,并突出了液晶自组装建模在组织形态发生研究中所起的重要作用。

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