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Photonic force optical coherence elastography for three-dimensional mechanical microscopy

机译:用于三维机械显微镜的光子力光学相干弹性成像

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Optical tweezers are an invaluable tool for non-contact trapping and micro-manipulation, but their ability to facilitate high-throughput volumetric microrheology of biological samples for mechanobiology research is limited by the precise alignment associated with the excitation and detection of individual bead oscillations. In contrast, radiation pressure from a low-numerical aperture optical beam can apply transversely localized force over an extended depth range. Here we present photonic force optical coherence elastography (PF-OCE), leveraging phase-sensitive interferometric detection to track sub-nanometer oscillations of beads, embedded in viscoelastic hydrogels, induced by modulated radiation pressure. Since the displacements caused by ultra-low radiation-pressure force are typically obscured by absorption-mediated thermal effects, mechanical responses of the beads were isolated after independent measurement and decoupling of the photothermal response of the hydrogels. Volumetric imaging of bead mechanical responses in hydrogels with different agarose concentrations by PF-OCE was consistent with bulk mechanical characterization of the hydrogels by shear rheometry.
机译:光学镊子是非接触式捕获和微处理的无价工具,但是它们促进生物样品的高通量体积微流变学以进行机械生物学研究的能力受到与激发和检测单个磁珠振荡相关的精确对准的限制。相反,来自低数值孔径光束的辐射压力可以在扩展的深度范围内施加横向局部力。在这里,我们介绍光子力光学相干弹性成像(PF-OCE),利用相敏干涉检测技术来跟踪由调制辐射压力引起的嵌在粘弹性水凝胶中的珠子的亚纳米级振荡。由于通常由吸收介导的热效应掩盖了由超低辐射压力引起的位移,因此在独立测量和将水凝胶的光热响应解耦后,即可分离出珠的机械响应。通过PF-OCE对琼脂糖浓度不同的水凝胶中的珠子机械响应进行体积成像,与通过剪切流变法对水凝胶的整体力学表征相一致。

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