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Imaging Cellular and Viral Materials with Small Cantilevers Developed for High Speed Atomic Force Microscopy

机译:利用小悬臂为高速原子力显微镜开发的细胞和病毒材料成像。

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High speed atomic force microscopy (AFM) holds the promise of investigating dynamic systems in real time with single molecule resolution. With the big push towards understanding more complex systems such as cell mechanics or cell-cell and cell-virus interactions, a tool is required that can extract information about these processes in real time in a physiological environment. Atomic force microscopy has been successfully used for investigations of many biological systems and materials in real life conditions, but taking AFM images takes too long to follow many biologically relevant processes. Therefore, attempts have been made to develop high speed AFM by reengineering all the components of an AFM system and much progress has been made. To be useful for investigations of biological systems however, it is often essential to keep imaging forces low in order to get good image quality and not to damage the sample. In this paper we will discuss new small AFM cantilevers we've developed to combine high resonance frequencies for faster imaging with low spring constants for gentle imaging.
机译:高速原子力显微镜(AFM)有望以单分子分辨率实时研究动态系统。随着对理解更复杂系统(例如细胞力学或细胞-细胞与细胞-病毒相互作用)的巨大推动,需要一种工具,该工具可以在生理环境中实时提取有关这些过程的信息。原子力显微镜已成功地用于现实生活条件下许多生物系统和材料的研究,但是拍摄AFM图像花费的时间太长,无法遵循许多生物学相关的过程。因此,已经尝试通过重新设计AFM系统的所有组件来开发高速AFM,并且已经取得了很大进展。但是,为了对生物学系统的研究有用,通常必须保持较低的成像力,以获得良好的图像质量并且不损坏样品。在本文中,我们将讨论我们开发的新型小型AFM悬臂,其将高共振频率(用于更快的成像)与低弹簧常数(用于进行柔和成像)相结合。

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