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Fabricating microscopic tools: towards optically actuated micro-robotics

机译:制造微观工具:朝着光学驱动的微型机器人方向发展

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Direct laser writing is a powerful and flexible tool with which to create 3D micro-scale structures with nanoscale features. These structures can then be dispersed in aqueous media and dynamically actuated in three dimensions using optical tweezers. The ability to build, actuate and precisely measure the motion of complex microscopic structures heralds a variety of new applications - optically actuated micro-robotics. In this article we describe how these devices are designed, fabricated and controlled. Once trapped, we are able to accurately measure the translational and rotational Brownian motion of the structures in real-time (at up to a few kHz) in three dimensions using high-speed video stereo-microscopy. This enables their motion to be controlled automatically using feedback, transforming the structures into quantitative tools. We discuss a range of applications, including the imaging of surface topography inside a sealed micro-fluidic chamber, and work towards the controlled rotation of cells about an arbitrary axis.
机译:直接激光写入是一种强大而灵活的工具,可用来创建具有纳米级特征的3D微型结构。然后可以将这些结构分散在水性介质中,并使用光镊在三个维度上动态激活。建立,驱动和精确测量复杂的微观结构的运动的能力预示了多种新应用-光学驱动的微型机器人。在本文中,我们描述了如何设计,制造和控制这些设备。一旦被困住,我们便能够使用高速视频立体显微镜在三个维度上实时(高达几千赫兹)准确地测量结构的平移和旋转布朗运动。这样可以使用反馈自动控制其运动,从而将结构转换为定量工具。我们讨论了一系列应用,包括在密封的微流体室内进行表面形貌成像,并努力使细胞围绕任意轴旋转。

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