Opt Lett. 2024 Oct 1;49(19):5531-5534. doi: 10.1364/OL.539208.
Photoacoustic (PA) remote sensing (PARS) microscopy represents a significant advancement by eliminating the need for traditional acoustic coupling media in PA microscopy (PAM), thereby broadening its potential applications. However, current PARS microscopy setups predominantly rely on free-space optical components, which can be cumbersome to implement and limit the scope of imaging applications. In this study, we develop an all-fiber miniature non-contact PA probe based on PARS microscopy, utilizing a 532-nm excitation wavelength, and showcase its effectiveness in in vivo vascular imaging. Our approach integrates various fiber-optic components, including a wavelength division multiplexer, a mode field adaptor, a fiber lens, and an optical circulator, to streamline the implementation of the PARS microscopy system. Additionally, we have successfully developed a miniature PA probe with a diameter of 4 mm. The efficacy of our imaging setup is demonstrated through in vivo imaging of mouse brain vessels. By introducing this all-fiber miniature PA probe, our work may open up new opportunities for non-contact PAM applications.
光声(PA)远程传感(PARS)显微镜通过消除 PA 显微镜(PAM)中传统声耦合介质的需求,代表了一项重大进展,从而拓宽了其潜在应用范围。然而,目前的 PARS 显微镜设置主要依赖于自由空间光学元件,这在实现上可能很麻烦,并限制了成像应用的范围。在本研究中,我们开发了一种基于 PARS 显微镜的全光纤微型非接触 PA 探头,利用 532nm 的激发波长,并展示了其在体内血管成像中的有效性。我们的方法集成了各种光纤组件,包括波分复用器、模式场适配器、光纤透镜和光环形器,以简化 PARS 显微镜系统的实现。此外,我们还成功开发了一种直径为 4mm 的微型 PA 探头。通过对小鼠脑血管的体内成像,证明了我们的成像设置的有效性。通过引入这种全光纤微型 PA 探头,我们的工作可能为非接触式 PAM 应用开辟新的机会。