Botvinick Elliot L, Berns Michael W
Beckman Laser Institute, University of California, Irvine, 92612, USA.
Microsc Res Tech. 2005 Oct;68(2):65-74. doi: 10.1002/jemt.20216.
We have engineered a robotic laser ablation and tweezers microscope that can be operated via the internet using most internet accessible devices, including laptops, desktop computers, and personal data assistants (PDAs). The system affords individual investigators the ability to conduct micromanipulation experiments (cell surgery or trapping) from remote locations (i.e., between the US and Australia). This system greatly expands the availability of complex and expensive research technologies via investigator-networking over the internet. It serves as a model for other "internet-friendly" technologies leading to large scale networking and data-sharing between investigators, groups, and institutions on a global scale. The system offers three unique features: (1) the freedom to operate the system from any internet-capable computer, (2) the ability to image, ablate, and/or trap cells and their organelles by "remote-control," and (3) the security and convenience of controlling the system in the laboratory on the user's own personal computer and not on the host machine. Four "proof of principle" experiments were conducted: (1) precise control of microscope movement and live cell visualization, (2) subcellular microsurgery on the microtubule organizing center of live cells viewed under phase contrast and fluorescence microscopy, (3) precise targeting of multiple sites within single red blood cells, and (4) optical trapping of 10 microm diameter polystyrene microspheres.
我们设计了一种机器人激光消融与镊子显微镜,它可以通过互联网,使用大多数可访问互联网的设备来操作,这些设备包括笔记本电脑、台式计算机和个人数据助理(PDA)。该系统使研究人员能够在远程位置(即在美国和澳大利亚之间)进行微操纵实验(细胞手术或捕获)。通过互联网上的研究人员网络,这个系统极大地扩展了复杂且昂贵的研究技术的可用性。它为其他“互联网友好型”技术树立了典范,促成了全球范围内研究人员、团队和机构之间的大规模网络连接和数据共享。该系统具有三个独特的特点:(1)可从任何具备上网功能的计算机操作该系统的自由;(2)通过“远程控制”对细胞及其细胞器进行成像、消融和/或捕获的能力;(3)在实验室中使用用户自己的个人计算机而非主机来控制系统的安全性和便利性。我们进行了四项“原理验证”实验:(1)显微镜移动的精确控制和活细胞可视化;(2)在相差显微镜和荧光显微镜下对活细胞的微管组织中心进行亚细胞显微手术;(3)对单个红细胞内多个位点的精确靶向;(4)对直径为10微米的聚苯乙烯微球进行光镊捕获。