Wang Hui, Yang Xiaoquan, Liu Yanyan, Jiang Bowen, Luo Qingming
Opt Express. 2013 Oct 7;21(20):24210-8. doi: 10.1364/OE.21.024210.
We developed a new reflection-mode optical-resolution photoacoustic microscopy (OR-PAM) based on the cooperation of a reflective objective and an ultrasonic transducer. The reflective objective is used to produce nearly diffraction-limited optical focusing, and the excited ultrasound waves are then directly detected by an ultrasonic transducer that was placed in the central cone of the objective. This new design avoids the coupling between optical focusing and ultrasound transmission in the reflection mode. Moreover, the proposed system is able to provide lateral resolution of 1.2 μm at 580 nm, penetration depth of 0.9 mm in biological tissues, and a work distance of 6.0 mm. We present in vivo imaging of the microvasculature in mouse ears and in vitro imaging of red blood cells (RBCs), which demonstrate the capability of the system to study microcirculation.
我们基于反射物镜和超声换能器的协同作用,开发了一种新型反射模式光学分辨率光声显微镜(OR-PAM)。反射物镜用于产生接近衍射极限的光学聚焦,然后由置于物镜中心锥内的超声换能器直接检测激发的超声波。这种新设计避免了反射模式下光学聚焦与超声传输之间的耦合。此外,所提出的系统能够在580nm波长下提供1.2μm的横向分辨率、在生物组织中0.9mm的穿透深度以及6.0mm的工作距离。我们展示了小鼠耳部微血管的体内成像以及红细胞(RBC)的体外成像,这证明了该系统研究微循环的能力。