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Development of a joystick-controlled optically-induced dielectrophoresis platform for real-time micromanipulation

机译:开发用于实时显微操作的操纵杆控制的光学诱导介电泳平台

摘要

Global efforts have been made in the past two decades to efficiently manipulate and assemble tiny entities at micro-scale or even nano-scale. In this paper, we discuss our team's development of adding an interactive controller to the emerging optically-induced dielectrophoresis (ODEP) platform which could be used to rapidly and parallelly manipulate micro and nano particles in fluidic medium. We have demonstrated that, with a real-time control interface via a joystick, users can intuitively use the platform to selectively trap and move a single 10um polystyrene micro-bead easily and move it at a maximum velocity of 347itm/s. The frequency spectrum, force and velocity in manipulating micro-beads are investigated to characterize this controller-integrated ODEP system. Through experimental investigation, we have verified that the smoothness of the light motion brings a limit to the speed in manipulating micro entities in a static fluidic medium. It is further shown that there is a possibility to increase the maximum manipulation speed by enhancing both the software and hardware refresh rates for the animated light image projected in an ODEP chip. © 2013 IEEE.
机译:在过去的二十年中,全球做出了巨大努力,以有效地操纵和组装微观甚至纳米尺度的微小实体。在本文中,我们讨论了我们团队在新兴的光诱导介电电泳(ODEP)平台上添加交互式控制器的发展,该平台可用于快速并行地处理流体介质中的纳米微粒。我们已经证明,通过操纵杆的实时控制界面,用户可以直观地使用该平台轻松地选择性捕获和移动单个10um聚苯乙烯微珠,并以347itm / s的最大速度移动它。研究了操纵微珠的频谱,力和速度,以表征该控制器集成的ODEP系统。通过实验研究,我们已经验证了光运动的平稳性给在静态流体介质中操纵微实体的速度带来了限制。进一步表明,有可能通过提高ODEP芯片中投影的动画光图像的软件和硬件刷新率来提高最大操纵速度。 ©2013 IEEE。

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