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Quantitative mapping of local mechanical properties of living cells at near- physiological conditions using multi-harmonic atomic force microscopy

机译:使用多谐波原子力显微镜对接近生理条件下活细胞局部力学性能的定量作图

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Measurements of local nanomechanical properties of living cells recently have become extremely important for the cellular biology and biomechanics communities [1]. The measurement of progressive variations in viscoelastic properties of living cells in their native physiological liquid environments can provide significant insight to the mechanistic processes underpinning morphogenesis, mechano-transduction, motility, metastasis, aging, etc. Atomic Force Microscopy (AFM) based biomechanical assays have the unique advantage of resolving/mapping spatially the local nanomechanical properties over the cell surface. However current methods using standard force-volume, force displacement curves [2-3] are very low resolution and low speed making them completely incompatible for biomechanical assays of living cells.
机译:最近,对于细胞生物学和生物力学界来说,活细胞局部纳米力学性能的测量已变得极为重要[1]。对活细胞在其天然生理液体环境中粘弹性的进行性变化的测量可以为基础的形态形成,机械转导,运动性,转移,衰老等机制提供重要的见识。基于原子力显微镜(AFM)的生物力学测定具有在空间上解析/映射局部纳米力学特性的独特优势。但是,当前使用标准力-体积,力位移曲线[2-3]的方法的分辨率和速度都非常低,这使其与活细胞的生物力学测定完全不兼容。

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