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Orientation of swimming cells with annular beam optical tweezers

机译:带环形光束光学镊子的游泳池定向

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摘要

Optical tweezers are a versatile tool that can be used to manipulate small particles including both motile and non-motile bacteria and cells. The orientation of a non-spherical particle within a beam depends on the shape of the particle and the shape of the light field. By using multiple beams, sculpted light fields or dynamically changing beams, it is possible to control the orientation of certain particles. In this paper we discuss the orientation of the rod-shaped bacteria Escherichia coli (E. coli) using dynamically shifting annular beam optical tweezers. We begin with examples of different beams used for the orientation of rod-shaped particles. We discuss the differences between orientation of motile and non-motile particles, and explore annular beams and the circumstances when they may be beneficial for manipulation of non-spherical particles or cells. Using simulations we map out the trajectory the E. coli takes. Estimating the trap stiffness along the trajectory gives us an insight into how stable an intermediate rotation is with respect to the desired orientation. Using this method, we predict and experimentally verify the change in the orientation of motile E. coli from vertical to near-horizontal with only one intermediate step. The method is not specific to exploring the orientation of particles and could be easily extended to quantify the stability of an arbitrary particle trajectory.
机译:光学镊子是一种多功能工具,可用于操纵小颗粒,包括动机和非运动细菌和细胞。梁内的非球形颗粒的取向取决于颗粒的形状和光场的形状。通过使用多个光束,雕刻的光场或动态变化的光束,可以控制某些粒子的方向。在本文中,我们讨论了使用动态转移环形射束光学镊子的杆状细菌大肠杆菌(大肠杆菌)的取向。我们从用于杆状颗粒的方向的不同光束的示例开始。我们讨论了动机和非运动颗粒的取向之间的差异,并探索了环形光束以及它们对于操纵非球形颗粒或细胞的环境。使用模拟我们将E. Coli所需的轨迹绘制出来。沿着轨迹估计陷阱刚度使我们能够深入了解中间旋转相对于所需方向的稳定性。使用这种方法,我们预测并通过仅用一个中间步骤从垂直到垂直于近水平验证动机大肠杆菌方向的变化。该方法不具体地探索粒子的取向,并且可以容易地扩展以量化任意粒子轨迹的稳定性。

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