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Biomechanics of C2C12 Cells Observed with Cellular Resolution Scanning Acoustic Microscope Combined with Optical Microscope *

机译:用细胞分辨率扫描声学显微镜与光学显微镜联合使用的C2C12细胞的生物力学与光学显微镜 *

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Biomechanics of the cell indicates the inner structure and viability of the cell. Mechanical properties are represented by acoustic properties such as speed of sound (SOS) or acoustic impedance. In the present study, cellular resolution scanning acoustic microscope combined with optical microscope (OptSAM) is developed to observe the change of mechanical properties in cell differentiation. Main part of the OptSAM was consisted of 350 MHz ultrasound transducer mechanically scanned by a piezo-actuator. Thickness, SOS, acoustic impedance, density and elastic bulk modulus of the cell were deduced by the ultrasound responses in both time domain and frequency domain. C2C12 cell changing its form from myoblast to myotube was observed by OptSAM. The value of bulk modulus slightly increased in response to differentiation process. OptSAM non-invasively provides important information on biomechanics of cells without contact or staining.
机译:细胞的生物力学表明细胞的内部结构和活力。机械性能由声学特性表示,例如声音速度(SOS)或声阻抗。在本研究中,开发了与光学显微镜(OPTSAM)结合光学显微镜(OPTSAM)的细胞分辨率扫描声学显微镜以观察细胞分化中力学性能的变化。 OptSAM的主要部分由压电致动器机械扫描350 MHz超声换能器。通过时间域和频域中的超声响应推导了电池的厚度,SOS,声阻抗,密度和弹性体积模量。 OPTSAM观察到将其从肌细胞中改变其从肌细胞到肌肌细胞的细胞。响应于分化过程,体积模量的值略微增加。 Optsam非侵入性地提供有关细胞生物力学的重要信息,而无需接触或染色。

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