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The production of surfaces of defined topography and chemistry for microbial retention studies, using ion beam sputtering technology

机译:使用离子束溅射技术生产用于微生物保留研究的确定的形貌和化学表面

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Microbial cells retained in surface defects on an inert substratum may pose problems in cross-contamination (food contact surfaces), and provide a focus for infection (medical devices). Although the type and degree of substratum surface roughness affects the retention of microorganisms on a surface, few studies have investigated this phenomenon using well -characteri sed substrata. A range of surfaces with features of regular and defined dimension on the micron and submicron scale has been produced. Various filters/grids of known pore size acted directly as templates, and a range of masks were placed upon smooth silicon wafers. Titanium was applied to the surfaces via magnetron thin film deposition, and the surfaces were visualised and characterised using atomic force microscopy, in preparation for microbial retention studies.
机译:保留在惰性基质表面缺陷中的微生物细胞可能会在交叉污染(食品接触表面)中造成问题,并成为感染的重点(医疗设备)。尽管基质表面粗糙度的类型和程度会影响微生物在表面上的保留,但很少有研究使用特性良好的基质研究这种现象。已经生产出一系列具有微米和亚微米尺度的规则和限定尺寸特征的表面。各种已知孔径的过滤器/网格直接充当模板,并且在光滑的硅晶片上放置了一系列掩模。通过磁控管薄膜沉积将钛施加到表面,并使用原子力显微镜对表面进行可视化和表征,以准备进行微生物保留研究。

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