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High-extinction virtually imaged phased array-based Brillouin spectroscopy of turbid biological media

机译:浊态生物介质的高消光虚拟成像相控阵布里渊光谱

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摘要

Brillouin microscopy has recently emerged as a powerful technique to characterize the mechanical properties of biological tissue, cell, and biomaterials. However, the potential of Brillouin microscopy is currently limited to transparent samples, because Brillouin spectrometers do not have sufficient spectral extinction to reject the predominant non-Brillouin scattered light of turbid media. To overcome this issue, we combined a multi-pass Fabry-Perot interferometer with a two-stage virtually imaged phased array spectrometer. The Fabry-Perot etalon acts as an ultra-narrow band-pass filter for Brillouin light with high spectral extinction and low loss. We report background-free Brillouin spectra from Intralipid solutions and up to 100 μm deep within chicken muscle tissue.
机译:布里渊显微镜最近成为一种强大的技术,可以表征生物组织,细胞和生物材料的机械性能。然而,布里渊显微镜的潜力目前仅限于透明样品,因为布里渊光谱仪没有足够的光谱消光来拒绝混浊介质的主要非布里渊散射光。为了克服这个问题,我们将多程Fabry-Perot干涉仪与两级虚拟成像相控阵光谱仪结合使用。 Fabry-Perot标准具充当具有高光谱消光和低损耗的布里渊光的超窄带通滤波器。我们报告了从脂质内溶液到鸡肌肉组织内最深100μm的无背景布里渊光谱。

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