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An Insight into the Interphase Concept as Applied to the Adhesion between Inert and Biologic Material Systems

机译:应用于惰性和生物材料系统之间的粘附性的相互概念的洞察

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In several research fields, the properties at the interphase between two materials in contact can be quantified by the degree of adhesion. Previous research indicated that a rigorous prediction of the quality of cooperation between biomaterial substrate and human component (cells/tissue) can be achieved though analytical models. In the present investigation, an established theory related to the interphase adhesion in composite materials has been used to redefine the adhesion process of human tissue to a substrate and furthermore, to analyze the type of cooperation between them. Through the present investigation it is shown that modeling-based design of biomaterials can enable the optimum feedback of the human component. Thus, the aim of the present study is to interconnect elements of material science, mechanics and biology in a common theory on the analytical modeling at the interphase between inert materials and human cells/ tissues and further on, to develop a strategy ofprogrammed biomaterial design based on modeling output and property prediction. It has been concluded that phenomena at the interphase decide for the implant integration in the host body.
机译:在几个研究领域中,可以通过粘附程度来量化两种接触材料之间的间相之间的性质。以前的研究表明,尽管分析模型,但可以实现对生物材料基质和人组分(细胞/组织)之间的合作质量的严格预测。在本研究中,已使用与复合材料中的相互粘附相关的建立理论,用于将人体组织的粘附过程重新定义为基材,而且还分析它们之间的合作类型。通过本发明的研究表明,基于建模的生物材料设计可以实现人组分的最佳反馈。因此,本研究的目的是在惰性材料和人体细胞/组织之间的间差异的分析模型中互连材料科学,力学和生物学的元素,进一步开发基于的编程生物材料设计的策略论建模输出与性能预测。它已经得出结论,间期间的现象决定了主体中的植入物整合。

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