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Microfluidic sorting of arbitrary cells with dynamic optical tweezers

机译:用动态光镊对任意细胞进行微流分选

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摘要

Optical gradient forces generated by fast steerable optical tweezers are highly effective for sorting small populations of cells in a lab-on-a-chip environment. The presented system can sort a broad range of different biological specimens by an automated optimisation of the tweezer path and velocity profile. The optimal grab positions for subsequent trap and cell displacements are estimated from the intensity of the bright field image, which is derived theoretically and proven experimentally. We exhibit rapid displacements of 2 μm small mitochondria, yeast cells, rod-shaped bacteria and 30 μm large protoplasts. Reliable sorting of yeast cells in a microfluidic chamber by both morphological criteria and by fluorescence emission is demonstrated.
机译:由快速操纵的光镊产生的光梯度力对于在芯片实验室环境中分拣少量细胞非常有效。所提出的系统可以通过镊子路径和速度分布图的自动优化对各种各样的不同生物样本进行分类。从理论上推导并经实验证明的明场图像的强度可以估算出随后陷阱和细胞移位的最佳抓取位置。我们展示了2μm小线粒体,酵母细胞,棒状细菌和30μm大原生质体的快速移位。通过形态学标准和荧光发射,证明了微流室内酵母细胞的可靠分选。

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