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Budding and growth of optically trapped yeast cells

机译:光学捕获酵母细胞的萌芽和生长

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Summary form only given. Microspheres (2 /spl mu/m-diameter spheres) are trapped and manipulated using interferometric optical tweezers. The dielectric microspheres were aligned along the focused interference pattern generated by a Michelson interferometer and two-beam interference. Not only the shape of cell but the direction of budding and growth of the yeast cell can be changed by focused interference fringes. Although the yeast cell is trapped for several hours, it doesn't show any optical damage (we used near infrared lasers as trapping light source). Mechanical properties of budding yeast can be measured using the interferometric optical trap. Thus, interferometric optical tweezers enable one to trap and manipulate multiple yeast cells. We observed what influence the yeast cells in the optical potential well have on one another.
机译:仅提供摘要表格。使用干涉式光学镊子捕获和操纵微球(2个/ spl微米/米直径的球)。介电微球沿着由迈克尔逊干涉仪和两光束干涉产生的聚焦干涉图进行排列。通过聚焦干涉条纹不仅可以改变细胞的形状,而且可以改变酵母细胞的出芽和生长的方向。尽管酵母细胞被捕获了几个小时,但是它没有表现出任何光学损伤(我们使用近红外激光作为捕获光源)。出芽酵母的机械性能可以使用干涉光阱来测量。因此,干涉式光学镊子能够捕获和操纵多个酵母细胞。我们观察到了光势阱中的酵母细胞相互之间有什么影响。

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