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首页> 外文期刊>The Journal of Adhesion >A Method to Determine the Spatial Scale Implicated in Adhesion. Application on Human Cell Adhesion on Fractal Isotropic Rough Surfaces
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A Method to Determine the Spatial Scale Implicated in Adhesion. Application on Human Cell Adhesion on Fractal Isotropic Rough Surfaces

机译:一种确定与粘附有关的空间比例的方法。人细胞粘附在分形各向同性粗糙表面上的应用

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摘要

An extensive statistical analysis is proposed to determine the best relevant roughness parameters as a function of spatial scales that affect adhesion on surfaces. The methodology is based on a multiscale decomposition of the roughness surface and is linked with adhesion measurements. This method is applied to study cell adhesion on a very wide range of roughnesses of titanium substrates (22 surfaces, the average roughness R_a from 1 to 21 μm) tooled by an electro-erosion process and coated with a polyelectrolyte, that leads to identical surface chemistry. It is shown that the scale length of observation should be a few times the cell size to put into evidence the influence of the surface morphology on cell adhesion. It is observed that the adhesion is the lowest when the distance between the asperities of the roughness is near the cell size.
机译:提出了广泛的统计分析方法,以确定影响表面附着力的空间尺度的最佳相关粗糙度参数。该方法基于粗糙表面的多尺度分解,并与附着力测量相关联。该方法适用于研究通过电腐蚀工艺加工并涂有聚电解质的钛基材在非常宽范围的粗糙度(22个表面,平均粗糙度R_a从1到21μm)上的细胞粘附性,从而产生相同的表面化学。结果表明,观察的鳞片长度应为细胞大小的几倍,以证明表面形态对细胞粘附的影响。可以看出,当粗糙的粗糙之间的距离接近泡孔尺寸时,粘附力最低。

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