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Imaging Bio-electro-mechanics with Scanning Probe Microscopy: Unveiling Nature's Nanoscale Form and Function

机译:用扫描探针显微镜进行成像生物电力机械:揭幕性质的纳米级形式和功能

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Since the discovery in the late eighteenth century of electrically induced mechanical response in muscle tissue, coupling between electrical and mechanical phenomena has been shown to be a ubiquitous feature of biological systems. Here, we measure the local electromechanical properties of biological samples using piezoresponse force microscopy (PFM). This technique is combined with atomic force acoustic microscopy (AFAM) for simultaneous mapping the topography, structure, and electro-mechanical behavior of biological systems down to nanometer scales. We demonstrate the capability of these scanning probe microscopy (SPM) techniques to visualize as of yet unseen spatial variations in the composition and structure of calcified tissues, such as antlers, with 5 nm spatial resolution as well as local mechanical properties variation in a butterfly whig.
机译:由于在肌肉组织中的18世纪后期的电力诱导机械反应中发现,电气和机械现象之间的偶联被证明是生物系统的无处不在的特征。在这里,我们使用压电响应力显微镜(PFM)测量生物样品的局部机电特性。该技术与原子力声学显微镜(AFAM)组合以同时将生物系统的形貌,结构和电力行为同时绘制到纳米尺度。我们展示了这些扫描探针显微镜(SPM)技术以可视化的能力,如钙化组织的组成和结构的尚未看不见的空间变化,如鹿角,蝴蝶鞭子的局部机械性能变化。

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