首页> 外文会议>Czech-Polish-Slovak Optical Conference on Wave and Quantum Aspects of Contemporary Optics >Tool fabrication for automated indirect optical micro-manipulation
【24h】

Tool fabrication for automated indirect optical micro-manipulation

机译:用于自动间接光学微操纵的工具制造

获取原文

摘要

Indirect optical micro-manipulation refers to mechanical manipulation of microscopic objects by means of optically trapped micro-tools. Two-photon polymerization is used to prepare the micro-tools, which are then trapped by focused laser beams through their spherical "handle" parts. Simultaneous control of several laser traps by Holographic Optical Tweezers (HOT) allows for positioning (both transfer and rotation) of the micro-tools in 3D. We report on the development of micro-tools and their testing in an automated HOT system. In order to facilitate the manipulation of objects in large systems (exceeding the field-of-view of the trapping microscope objective) the HOT apparatus is equipped with an additional low-resolution microscope. The two live images are processed with the system of several computers communicating with each other via local network and displayed side-by-side on remote client computer to allow interaction with the user. Initially, the user clicks the positions of laser traps matching micro-tool handles. Subsequently, traps are merged into a set with one representative control point serving for manual mouse operations (drag and drop, rotation and by mouse wheel). In the autopilot mode, the micro-tool moves in the given direction and velocity until it reaches the image border where it turns back. In the simulator mode, the manipulation is performed with animated micro-tools instead of real ones captured by camera.
机译:间接光学微操纵是指通过光学捕获的微工具对微观物体的机械操纵。使用双光子聚合来制备微工具,然后通过它们的球形“手柄”部件通过聚焦激光束捕获。通过全息光学镊子(热)同时控制多个激光阱(热)允许微型工具的定位(转移和旋转)3D。我们在自动热系统中报告了微工具及其测试的开发。为了便于操纵大系统中的物体(超过捕获显微镜物镜的视野),热设备配备有额外的低分辨率显微镜。使用本地网络彼此通信的多台计算机的系统处理了两个实时图像,并在远程客户端计算机上并排显示,以允许与用户交互。最初,用户点击激光陷阱匹配的微型工具把手的位置。随后,将陷阱合并到具有用于手动鼠标操作的一个代表性控制点的集合(拖放,旋转,旋转和鼠标滚轮)。在自动驾驶仪模式中,微型工具在给定的方向和速度下移动,直到它到达其回头的图像边界。在模拟器模式中,操纵使用动画微型工具而不是由相机捕获的真实的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号