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Single-shot linear dichroism optical-resolution photoacoustic microscopy

机译:单发线性二色性光学分辨率光声显微镜

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摘要

Dichroism is a material property that causes anisotropic light-matter interactions for different optical polarizations. Dichroism relates to molecular types and material morphology and thus can be used to distinguish different dichroic tissues. In this paper, we present single-shot dichroism photoacoustic microscopy that can image tissue structure, linear dichroism, and polarization angle with a single raster scanning. We develop a fiber-based laser system to split one laser pulse into three with different polarization angles, sub-microseconds time delay, and identical pulse energy. A dual-fiber optical-resolution photoacoustic microscopy system is developed to acquire three A-lines per scanning step. In such a way, dichroism imaging can achieve the same speed as single-wavelength photoacoustic microscopy. Moreover, the three polarized pulses originate from one laser pulse, which decreases pulse energy fluctuations and reduces dichroism measurement noise by ∼35 %. The new dichroism photoacoustic imaging technique can be used to image endogenous or exogenous polarization-dependent absorption contrasts, such as dichroic tumor or molecule-labeled tissue.
机译:二向色性是一种材料特性,会引起不同光偏振的各向异性光-质相互作用。二向色性与分子类型和物质形态有关,因此可用于区分不同的二向色性组织。在本文中,我们提出了单次二色性光声显微镜,可以通过一次光栅扫描成像组织结构,线性二色性和偏振角。我们开发了一种基于光纤的激光系统,将一个激光脉冲分成三个偏振角,亚微秒延时和相同脉冲能量的三个激光脉冲。开发了一种双光纤光学分辨率光声显微镜系统,每个扫描步骤可获取三条A线。以这种方式,二向色成像可以达到与单波长光声显微镜相同的速度。此外,三个偏振脉冲来自一个激光脉冲,这减少了脉冲能量波动,并降低了约35%的二向色性测量噪声。新的二色性光声成像技术可用于成像内源性或外源性偏振依赖性吸收对比,例如二向色性肿瘤或分子标记的组织。

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