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Nanomanipulation of biological samples using a compact atomic force microscope under scanning electron microscope observation

机译:使用紧凑型原子力显微镜在扫描电子显微镜观察下对生物样品进行纳米处理

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摘要

We introduce a compact nanomanipulator that can be operated inside the sample chamber of a scanning electron microscope (SEM) for biological sample manipulation. The design of the nanomanipulator is based on that of an atomic force microscope (AFM). A self-sensitive cantilever is used to realize the compact body and thus it is possible to put a pair of the standalone AFM units on the sample stage in the SEM chamber. Using this system, we accomplished nanodissection of biological samples as well as AFM imaging under SEM observation. We then fabricated the surface of a rat renal glomerulus by scan-scratching and succeeded in making a small hole on the wall of a blood capillary. As a result, it was possible to observe the internal structure of the capillary, which had been hidden beneath the surface wall. Furthermore, using two AFM units on the sample stage of the SEM, we successfully dissected the lens fiber cells taken from a rat eye in a multi-probe operation using the two cantilevers. This system is expected to become a very useful tool for micro- and nanometer-scale anatomy and engineering applications.
机译:我们介绍了一种紧凑的纳米操纵器,该操纵器可以在扫描电子显微镜(SEM)的样品室内进行操作,以进行生物样品处理。纳米操纵器的设计基于原子力显微镜(AFM)的设计。使用自敏感的悬臂来实现紧凑的主体,因此可以将一对独立的AFM单元放在SEM室的样品台上。使用该系统,我们完成了生物样品的纳米解剖以及在SEM观察下的AFM成像。然后,我们通过扫描刮擦制作了大鼠肾小球的表面,并成功地在毛细管壁上制作了一个小孔。结果,可以观察到毛细管的内部结构,该内部结构隐藏在表面壁的下方。此外,在SEM的样品台上使用两个AFM单元,我们使用两个悬臂在多探针操作中成功解剖了从大鼠眼中取出的晶状体纤维细胞。该系统有望成为用于微米和纳米级解剖学和工程应用的非常有用的工具。

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