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Reactive organization of particles into macroscopic length scales by myelin growth

机译:通过髓鞘生长将颗粒反应性组织成宏观长度尺度

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Investigations of precipitation reactions in equilibrium self-assembled structures like vesicles, micelles, microemulsions, etc. is an active area of research, but growing biological systems are not equilibrium systems. Here we propose the use of a well-characterized nonequilibrium system of myelins in AOT/water to carry out precipitation reaction of CaCO3, It is found that the micro-flow patterns generated by myelin growth organize the particles formed into a chain of length of over 300 microns and whose form and structure are responsive to concentration of reactants and stresses in the system. It is suggested that this type of study of reactions in dynamic, structure-forming systems can be used to mimic some aspects of embryonic stage bone; growth. [References: 5]
机译:研究平衡的自组装结构(如囊泡,胶束,微乳液等)中的沉淀反应是研究的活跃领域,但不断发展的生物系统不是平衡系统。在这里,我们提出使用AOT /水中的髓磷脂的一个很好表征的非平衡系统来进行CaCO3的沉淀反应,发现髓磷脂生长产生的微流模式将形成的颗粒组织成一个长度超过300微米,其形式和结构对系统中反应物的浓度和应力有反应。建议在动态的结构形成系统中进行这类反应研究,以模仿胚胎阶段骨骼的某些方面。增长。 [参考:5]

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