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Thin-film optoacoustic transducers for the subcellular Brillouin oscillation imaging of individual biological cells

机译:用于单个生物细胞亚细胞布里渊振荡成像的薄膜光声换能器

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摘要

Mechanical characterisation and imaging of biological tissue has piqued interest in the applicability to cell and tissue biology. One method, based on detection of Brillouin oscillations, has already lead to demonstrations on biological cells using ultrasound in the GHz range. In this paper we present a technique to extend this picosecond laser ultrasound technique from point measurements and line scans into high resolution acoustic imaging. Our technique uses a three layered metal-dielectric-metal film under the cell as a transducer for the generation of ultrasound. The design of this transducer and measuring system is optimised to address a limiting SNR factor related to the cell fragility; its sensitivity to laser light. Our approach shields the cell from laser radiation while having acoustic generation, optical detection and aiding heat dissipation. For that, Brillouin detection is performed in transmission rather than reflection. The conditions necessary to perform successfully this kind of detection are discussed and experimental results on phantom, fixed and living cells are presented.
机译:生物组织的机械表征和成像引起了人们对细胞和组织生物学适用性的兴趣。一种基于布里渊振荡检测的方法,已经导致使用GHz范围内的超声对生物细胞进行演示。在本文中,我们提出了一种将这种皮秒激光超声技术从点测量和线扫描扩展到高分辨率声成像的技术。我们的技术使用位于细胞下方的三层金属介电金属膜作为产生超声波的换能器。优化了该传感器和测量系统的设计,以解决与细胞脆性有关的有限SNR因子。它对激光的敏感性。我们的方法可保护细胞免受激光辐射,同时具有声学产生,光学检测和辅助散热的作用。为此,布里渊检测是在透射而不是反射中进行的。讨论了成功进行这种检测所需的条件,并给出了幻影,固定细胞和活细胞的实验结果。

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