Inverted Scanning Microwave Microscope for In Vitro Imaging and Characterization of Biological Cells
Abstract
This paper presents for the first time an innovative instrument called an inverted scanning microwave microscope (iSMM), which is capable of noninvasive and label-free imaging and characterization of intracellular structures of a live cell on the nanometer scale. In particular, the iSMM is sensitive to not only surface structures, but also ectromagnetic properties up to one micrometer below the surface. Conveniently, the iSMM can be constructed through straightforward conversion of any scanning probe microscope, such as the atomic force microscope or the scanning tunneling microscope, with a simple metal probe to outperform traditional SMM in terms of ruggedness, and width, sensitivity and dynamic range. By contrast, the application of the traditional SMM to date has been limited to mainly surface physics and semiconductor technology, because the traditional SMM requires a fragile and expensive probe and is incompatible with saline solution or live biological cells.
Keywords
Cite
@article{arxiv.1903.04605,
title = {Inverted Scanning Microwave Microscope for In Vitro Imaging and Characterization of Biological Cells},
author = {Marco Farina and Xin Jin and Gianluca Fabi and Eleonora Pavoni and Andrea di Donato and Davide Mencarelli and Antonio Morini and Francesco Piacenza and Richard Al Hadi and Yan Zhao and Tiziana Pietrangelo and Xuanhong Cheng and James C. M. Hwang},
journal= {arXiv preprint arXiv:1903.04605},
year = {2019}
}
Comments
5 pages, 4 figures, published in Applied Physics Letters