Opt Lett. 2020 Aug 15;45(16):4559-4562. doi: 10.1364/OL.397614.
Histopathology of lipid-rich tissues is often a difficult endeavor, owing to the limited tissue processing workflows that can appropriately preserve tissue while keeping fatty deposits intact. Here, we present the first usage of near-infrared (NIR) photoacoustic remote sensing (PARS) to achieve imaging contrast from lipids without the need for exogenous stains or labels. In our system, the facile production of 1225 nm excitation pulses is achieved by the stimulated Raman scattering of a 1064 nm source propagating through an optical fiber. PARS-based detection is achieved by monitoring the change in the scattering profile of a co-aligned 1550 nm continuous-wave interrogation beam in response to absorption of the 1225 nm light by lipids. Our non-contact, reflection-mode approach can achieve a FWHM resolution of up to 0.96 µm and signal-to-noise ratios as high as 45 dB from carbon fibers and 9.7 dB from a lipid phantom. NIR-PARS offers a promising approach to image lipid-rich samples with a simplified workflow.
富含脂质组织的组织病理学分析通常具有挑战性,因为现有的组织处理方法很难在保持组织完整的同时保留脂质沉积。在此,我们首次展示了近红外(NIR)光声远程传感(PARS)技术的应用,该技术无需使用外源性染色剂或标记物即可获得脂质的成像对比度。在我们的系统中,通过光纤传播的 1064nm 光源的受激拉曼散射来产生易于产生的 1225nm 激发脉冲。通过监测与脂质吸收相响应的、共准直的 1550nm 连续波询问光束的散射轮廓变化来实现基于 PARS 的检测。我们的非接触式反射模式方法可以实现高达 0.96μm 的 FWHM 分辨率,从碳纤维获得高达 45dB 的信噪比,从脂质体获得高达 9.7dB 的信噪比。NIR-PARS 为简化工作流程的富含脂质样本的成像提供了一种很有前途的方法。