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Picosecond ultrasonics in a single biological cell: Toward the single cell echography

机译:单一生物细胞中的PICOSECOND超声波:朝向单个细胞的超影

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Picosecond ultrasonics is a non-destructive method for measuring mechanical and thermal properties such as sound velocity or heat conductivity at sub-micron scale. This technique uses femtosecond laser pulses for generating and detecting GHz acoustics waves. Its resolution is about nanometers in depth and a few micrometers laterally dictated by the optical diffraction limit. In this paper, the technique is applied to biological single in-vitro living cells. 1D mapping in a cell with a lateral resolutions of 2(mu)m is presented; 3 organelles are detected: nucleus, vacuole and membrane. From a set of cells, sound velocities and attenuations are deduced from the acoustic signals measured in the vacuole and the nucleus. Photoacoustic responses calculated according to thermoelastic generation mechanism and reflectometric detection model are presented and compared to the measurements. Measurements achieved in different varieties of the Allium Cepa cell illustrate the sensitivity of the technique.
机译:PICOSECOND Ultrasonics是一种非破坏性方法,用于测量机械和热性能,例如在亚微米级下的声速或导热率。该技术使用FemtoSecond激光脉冲来产生和检测GHz声学波。其分辨率约为纳米深度,并且通过光学衍射极限横向地决定了几微米。本文将该技术应用于生物单体体内活细胞。提出了具有2(mu)m的横向分辨率的电池中的1d映射;检测3个细胞器:核,液泡和膜。从一组电池,从液泡和细胞核中测量的声学信号推导出声速和衰减。根据热弹性产生机构和反射测量检测模型计算的光声响应并与测量相比。在葱属CEPA细胞的不同品种中实现的测量说明了该技术的灵敏度。

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