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A new, semi-automated technique for quantification of Candida adherence to denture acrylic surfaces.

机译:一种新的半自动化技术,用于量化假牙对假牙丙烯酸表面的粘附力。

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摘要

Adherence of Candida species to various host surfaces is an important prerequisite for colonization and pathogenesis. Researchers have problems in quantifying candidal adherence to plastic surfaces (used for fabrication of prostheses) due to coaggregation of adherent yeasts and to the laborious, time-consuming method of microscopic quantification. We describe here, a semi-automated image analysis system which is superior to conventional visual light microscopic techniques of quantifying yeasts attached to solid substrates such as acrylic. The results demonstrated a significant positive correlation between the number of cells quantified by traditional light microscopy and the corresponding area obtained by the semi-automated image analysis system (r = 0.83, P < 0.02). The new system is simple, less laborious and is particularly useful when the adherent attributes of a large battery of yeasts are characterized.
机译:念珠菌对各种宿主表面的粘附是定植和发病的重要先决条件。由于粘附酵母的共聚集和费力,费时的显微定量方法,研究人员在量化候选表面对塑料表面(用于制造假体)的粘附方面存在问题。我们在这里描述了一种半自动化的图像分析系统,该系统优于量化附着在固体基质(如丙烯酸)上的酵母的常规可见光显微镜技术。结果表明,通过传统光学显微镜定量的细胞数量与通过半自动图像分析系统获得的相应面积之间存在显着的正相关(r = 0.83,P <0.02)。新系统简单,省力,并且在表征大量酵母的附着特性时特别有用。

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