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Novel In situ nanomanipulation integrated with SEM-CT imaging system

机译:结合SEM-CT成像系统的新型原位纳米处理

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This paper presents a novel In situ nanomanipulation integrated with scanning electron microscope- computed tomography (SEM-CT) imaging system for 3D nanomanipulation. In our previous works, a nanorobotic manipulation system was established inside an environmental-SEM (E-SEM) for water-contained samples, including biological organism, based on a real-time high resolution SEM observation. However, the SEM image is limited in two dimensional (2D) and surficial information from the signals of secondly electrons. For nanosurgery applications, such as nanoinjection, it is needed to evaluate the sample in 3D space with its internal information after manipulation. The SEM-CT imaging system is developed for In situ nanomanipulation based on SEM observation. The CT is an effective method to obtain the internal 3D information as a non-destructive manner. The imaging resolution of our SEM-CT system is in less than 400 nm. A Caenorhabditis elegans (C. elegans) was used as a target of biological sample. To improve the contrast of SEM-CT imaging of C. elegans, the X-ray was tested by generating using brass and copper materials. Finally, the nanoinjection was demonstrated with SEM-CT imaging system to C. elegans using the nanoinjector which was fabricated by focused ion beam (FIB) process.
机译:本文介绍了与扫描电子显微镜计算断层扫描(SEM-CT)成像系统的扫描电子显微镜计算断层扫描(SEM-CT)成像系统进行了一种新颖。在我们以前的作品中,基于实时高分辨率SEM观察,在环境-SEM(E-SEM)内建立了一个环境-SEM(E-SEM)的纳米毒间操纵系统,包括生物生物。然而,SEM图像的二维(2D)和来自第二电子信号的结构信息限制。对于纳米射出的纳米射出的应用,如纳米投影,需要在操作后将样品评估3D空间中的样品。 SEM-CT成像系统是基于SEM观察的原位纳米尺寸开发的。 CT是获得内部3D信息作为非破坏性方式的有效方法。我们的SEM-CT系统的成像分辨率小于400nm。秀丽隐杆线虫(C.Eggans)被用作生物样本的目标。为了改善C.杆状杆菌的SEM-CT成像的对比,通过使用黄铜和铜材料产生测试X射线。最后,使用由聚焦离子束(FIB)工艺制造的纳米内部的纳米注射器对C.杆状物进行了纳米射出。

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