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Three-dimensional fiber optical trap for cell manipulation and force measurement

机译:用于细胞操纵和力测量的三维光纤阱

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Three dimensional cell manipulation using two inclined fibers with lensed tips is demonstrated. For the first time, the relationship between optical forces and cell positions is experimentally characterized in such an optical fiber trap, which exhibits a good linearity in the vicinity of the equilibrium. The system is capable of being a force sensor with a resolution of around 1 pN/μm. The spring constant is found to be dependent on the cell's shape: a prolate cell entails a larger spring constant than that of a round cell with a similar size. Numerical analysis is carried out by using a modified ray optics model with a spheroidal object in the trap. The spring constant obtained from the analysis also depends on the shape of a cell, which agrees with the experimental results. The fiber optical tweezers have great potential for three-dimensional manipulation and force measurement of cells.
机译:证实了使用具有透镜提示的两个倾斜纤维的三维细胞操纵。 首次,光学力和电池位置之间的关系在实验中表征在这种光纤阱中,其在平衡附近具有良好的线性性。 该系统能够成为具有大约1pn /μm的分辨率的力传感器。 发现弹簧常数依赖于细胞的形状:长块细胞需要比具有相似尺寸的圆形电池的弹簧常数。 通过使用陷阱中具有牙科对象的修改射线光学模型进行数值分析。 从分析中获得的弹簧常数也取决于细胞的形状,这与实验结果一致。 纤维光学镊子具有很大的三维操纵和力量测量的潜力。

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