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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Mechanical Properties of Single Cells by High-Frequency Time-Resolved Acoustic Microscopy
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Mechanical Properties of Single Cells by High-Frequency Time-Resolved Acoustic Microscopy

机译:高频时间分辨声学显微镜的单细胞力学性能

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摘要

In this paper, we describe a new, high-frequency, time-resolved scanning acoustic microscope developed for studying dynamical processes in biological cells. The new acoustic microscope operates in a time-resolved mode. The center frequency is 0.86 GHz, and the pulse duration is 5 ns. With such a short pulse, layers thicker than 3 mum can be resolved. For a cell thicker than 3 mum, the front echo and the echo from the substrate can be distinguished in the signal. Positions of the first and second pulses are used to determine the local impedance of the cell modeled as a thin liquid layer that has spatial variations in its elastic properties. The low signal-to-noise ratio in the acoustical images is increased for image generation by averaging the detected radio frequency signal over 10 measurements at each scanning point. In conducting quantitative measurements of the acoustic parameters of cells, the signal can be averaged over 2000 measurements. This approach enables us to measure acoustical properties of a single HeLa cell in vivo and to derive elastic parameters of subcellular structures. The value of the sound velocity inside the cell (1534.5 plusmn 33.6 m/s) appears to be only slightly higher than that of the cell medium (1501 m/s).
机译:在本文中,我们描述了一种新型的高频时间分辨扫描声学显微镜,该显微镜用于研究生物细胞中的动力学过程。新的声学显微镜以时间分辨模式运行。中心频率为0.86 GHz,脉冲持续时间为5 ns。通过这样短的脉冲,可以解决厚度大于3微米的层。对于厚度大于3毫米的单元,可以在信号中区分前回波和基底回波。第一和第二脉冲的位置用于确定建模为薄液体层的电池的局部阻抗,该液体薄层的弹性特性具有空间变化。通过在每个扫描点对10个测量值中的检测到的射频信号求平均值,可以提高声学图像中的低信噪比,以生成图像。在对细胞的声学参数进行定量测量时,可以对2000个测量值进行平均。这种方法使我们能够测量体内单个HeLa细胞的声学特性,并得出亚细胞结构的弹性参数。单元内部的声速值(1534.5加33.6 m / s)似乎仅比单元介质的声速(1501 m / s)略高。

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