Cai De, Li Guangyao, Xia Dongqing, Li Zhongfei, Guo Zhendong, Chen Sung-Liang
Opt Express. 2017 Aug 21;25(17):20162-20171. doi: 10.1364/OE.25.020162.
Photoacoustic endoscopy (PAE) is a promising tool for the detection of atherosclerotic plaque. In this work, we propose a novel design of a side-viewing PAE probe based on a synthetic aperture focusing technique (SAFT) to enable high transverse resolution over large depth of focus (DOF) along the radial direction. A point-like ultrasonic detector is used to ensure a wide detection angle and thus a large synthetic aperture for SAFT. We first perform numerical simulation to optimize the PAE probe design, which involves the placement of the point-like detector and the diameter of a reflection rod mirror. Then, experiments are conducted based on the optimized probe design. High transverse resolution of 115-190 µm over large DOF of 3.5 mm along the radial direction is experimentally obtained. The SAFT-based PAE holds promise for endoscopic imaging with a high transverse resolution for both the surface and deep regions of tissue.
光声内窥镜检查(PAE)是一种用于检测动脉粥样硬化斑块的很有前景的工具。在这项工作中,我们基于合成孔径聚焦技术(SAFT)提出了一种新型侧视PAE探头设计,以在沿径向的大焦深(DOF)范围内实现高横向分辨率。使用点状超声探测器来确保宽检测角度,从而为SAFT提供大合成孔径。我们首先进行数值模拟以优化PAE探头设计,这涉及点状探测器的放置和反射杆镜的直径。然后,基于优化后的探头设计进行实验。实验获得了沿径向3.5mm的大焦深范围内115 - 190μm的高横向分辨率。基于SAFT的PAE有望用于对组织表面和深部区域进行高横向分辨率的内窥镜成像。