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3D Manipulation of lipid nanotubes using laser trapped functional gel microbeads

机译:使用激光捕获的功能凝胶微珠进行脂质纳米管的3D操纵

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We developed a novel technique to manipulate lipid nanotubes in 3D by laser tweezers in water solutions. Laser tweezers are well known as one of the noncontact manipulation methods used in a closed space. We reported on 3D 6DOF manipulation of microbeads using 3D Synchronized Laser Micromanipulation (SLM), however, the blur is generated in the microscope image when multiple points at different height are trapped by scanning the focal point of laser. Moreover, it is difficult to manipulate a nano scaled rod-like object stably in 3D, since optical trap force is weak. To manipulate a lipid nanotube for example, firstly, we newly developed an observation system to improve blur of image by synchronization of shutter timing of CCD camera and laser scanning. As a result, we can obtain a clear image of the targets at different height while manipulating them. Secondly, we developed functional gel microtools which can adhere to the lipid nanotubes. We succeeded in controlling the position and orientation of the lipid nanotubes by using 3D SLM with shutter timing control method and novel functional gel microtools.
机译:我们开发了一种新颖的技术,通过激光镊子在水溶液中操纵三维脂质纳米管。激光镊子是众所周知的封闭空间中使用的非接触式操纵方法之一。我们在使用3D同步激光微操纵(SLM)的3D 6DOF操纵微珠上的3D 6DOF操纵,但是,当通过扫描激光的焦点捕获不同高度的多个点时,在显微镜图像中产生模糊。此外,难以在3D中稳定地操纵纳米鳞状物体,因为光学捕获力较弱。例如,为了操纵脂质纳米管,首先,我们新开发了一种观察系统,以通过CCD摄像机和激光扫描的快门定时同步来改善图像模糊。结果,我们可以在操纵它们的同时在不同高度处获得靶的清晰图像。其次,我们开发了功能凝胶微池,其可以粘附在脂质纳米管上。通过使用带快门正时控制方法和新颖的功能凝胶微烯来控制脂质纳米管的位置和取向。

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