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Characterization of cells and bacteria by photophoretic velocimetry

机译:光学速度计的细胞和细菌的表征

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The migration induced by intensive light is termed photophoresis. We could show that the evaluation of light-induced velocities of microparticles, bacteria and cells suspended in water is valuable for the prediction of their intrinsic properties. Two different laser setups were evaluated for photophoretic migration, a He-Ne laser (P = 45 mW, λ = 633 nm) and a diode-pumped cw-Nd:YAG (P = 1.1 W, λ = 532 nm). When analyzing the migration behavior of particles, we find significant differences depending on both, geometrical size and refractive index. We describe migration of PS particles of different size as well as with different refractive index but same diameter, SiO_2 and melamine resin. The potential for the separation of biological matter is shown as velocity distributions of heat killed bacteria of Escherichia coli, Salmonella enteritidis, and baker's yeast is reported.
机译:密集光引起的迁移被称为光吸镜。我们可以表明,悬浮在水中悬浮在水中的微粒,细菌和细胞的光诱导速度的评估对于预测其内在性质是有价值的。评估两种不同的激光设置以进行光学机迁移,HE-NE激光(P = 45mW,λ= 633nm)和二极管泵浦的CW-Nd:YAG(P = 1.1W,λ= 532nm)。当分析粒子的迁移行为时,我们发现了显着的差异,这取决于几何尺寸和折射率。我们描述了不同尺寸的PS颗粒的迁移以及不同的折射率,但直径相同,SiO_2和三聚氰胺树脂。据报道,生物物质分离的潜力作为大肠杆菌的热杀死细菌的速度分布,据报道了沙门氏菌肠炎和贝克酵母的速度分布。

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