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Discrimination between Normal and Cancerous Cells from Dynamic Viscoelastic Properties with a Laser-induced Surface Deformation Microscope

机译:激光诱导的表面形变显微镜从动态粘弹性性质中区分正常细胞和癌细胞

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We have clarified the differences in the power-law between normal and corresponding cancerous cells from dynamic viscoelastic measurements in a frequency range of 10~(2) to 10~(5) Hz with a laser-induced surface deformation (LISD) microscope. From the differences in the power spectra at higher frequencies, it has been clarified that a normal cell obeys the power-law with a single exponent, while a cancer cell with two exponents, indicating that the plasma membrane in the cancerous cell has at least two layers with different viscoelastic properties. In LISD measurements, the extension of the upper limit of the applied frequency up to 10~(5) Hz allows us to clarify the existence of the two power-law exponents in the cancerous cell. Understanding the differences between normal and cancerous cells from the power-law in addition to conventional elasticity would be useful for the identification of cancerous cells and for the construction of a mechanical model for their invasion.
机译:我们用激光诱导表面变形(LISD)显微镜在频率范围为10〜(2)至10〜(5)Hz的动态粘弹性测量中阐明了正常癌细胞和相应癌细胞之间的幂律差异。从较高频率下的功率谱的差异中可以看出,正常细胞具有单一指数,而癌细胞具有两个指数,这表明癌细胞中的质膜至少具有两个指数。层具有不同的粘弹性。在LISD测量中,所施加频率上限的扩展范围高达10〜(5)Hz,这使我们能够弄清楚癌细胞中两个幂律指数的存在。除了常规的弹性之外,从幂律中了解正常细胞与癌细胞之间的差异将有助于癌细胞的识别以及构建其入侵的力学模型。

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