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Columnar deformation of human red blood cell by highly localized fiber optic Bessel beam stretcher

机译:高度局部化光纤贝塞尔光束拉伸器对人红细胞的柱状变形

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摘要

A single human red blood cell was optically stretched along two counter-propagating fiber-optic Bessel-like beams in an integrated lab-on-a-chip structure. The beam enabled highly localized stretching of RBC, and it induced a nonlinear mechanical deformation to finally reach an irreversible columnar shape that has not been reported. We characterized and systematically quantified this optically induced mechanical deformation by the geometrical aspect ratio of stretched RBC and the irreversible stretching time. The proposed RBC mechanism can realize a versatile and compact opto-mechanical platform for optical diagnosis of biological substances in the single cell level.
机译:在集成的芯片实验室结构中,沿两个反向传播的类似贝塞尔的光纤沿光学方式拉伸了一个人类红细胞。该梁实现了红细胞的高度局部拉伸,并引起了非线性机械变形,最终达到了未报道的不可逆的圆柱形状。我们通过拉伸的RBC的几何纵横比和不可逆的拉伸时间来表征和系统地量化这种光学诱导的机械变形。所提出的RBC机制可以实现用于在单细胞水平上对生物物质进行光学诊断的多功能且紧凑的光机械平台。

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