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Fabrication and formation mechanism of electrospun spatially defined fibrous patterning structures on conductive and insulating substrates

机译:电纺空间限定纤维图案化结构在导电和绝缘基板上的制造和形成机理

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Besides the conductive patterning substrate, spatially well-defined microfibrous architectures can also be electrospun by using an insulating topographically structured collector (e.g. a nylon fabric). In both cases, it is proposed that the formation of the electrospun microfibrous patterns can be ascribed to the re-distribution of static electric field whenever collectors with different topography are introduced. Moreover, a series of simulation of the static electric field for various collectors (e.g. flat Al foil, conductive and insulating patterned substrates) have been systematically made to illustrate the formation mechanism, respectively. Our results are considered to warrant further scientific understanding on the formation of electrospun microfibrous patterning constructs, and helpful for easy generation of spatially defined architectures which have applications in a variety of areas such as tissue engineering, cell adhesion, proliferation and migration, etc.
机译:除了导电图案衬底之外,通过使用绝缘地形结构收集器(例如尼龙织物),还可以通过电纺器超肌件也可以是Electrome的。在这两种情况下,建议在引入具有不同形貌的收集器时,可以将电纺微纤维图案的形成可以归因于静电场的重新分布。此外,已经系统地制造了各种收集器的静电场的一系列模拟(例如,平坦的Al箔,导电和绝缘基板),分别示出了形成机制。我们的结果被认为是关于静电梭微纤维图案化构建体的形成,并有助于轻松生成具有在各种领域的空间定义的架构,例如组织工程,细胞粘附,增殖和迁移等。

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