Chen Yuwen, Chen Buhua, Yu Tengfei, Yin Lu, Sun Mingjian, He Wen, Ma Cheng
Department of Electronic Engineering, Tsinghua University, Beijing, China.
Department of Ultrasound, Beijing Tiantan Hospital, Capital Medical University, Beijing, China.
Front Neurosci. 2021 May 17;15:672788. doi: 10.3389/fnins.2021.672788. eCollection 2021.
Photoacoustic (PA, or optoacoustic, OA) mesoscopy is a powerful tool for mouse cerebral imaging, which offers high resolution three-dimensional (3D) images with optical absorption contrast inside the optically turbid brain. The image quality of a PA mesoscope relies on the ultrasonic transducer which detects the PA signals. An all-optical ultrasound sensor based on a Fabry-Pérot (FP) polymer cavity has the following advantages: broadband frequency response, wide angular coverage and small footprint. Here, we present 3D PA mesoscope for mouse brain imaging using such an optical sensor. A heating laser was used to stabilize the sensor's cavity length during the imaging process. To acquire data for a 3D angiogram of the mouse brain, the sensor was mounted on a translation stage and raster scanned. 3D images of the mouse brain vasculature were reconstructed which showed cerebrovascular structure up to a depth of 8 mm with high quality. Imaging segmentation and dual wavelength imaging were performed to demonstrate the potential of the system in preclinical brain research.
光声(PA,或光声,OA)显微术是一种用于小鼠脑部成像的强大工具,它能在光学浑浊的脑内提供具有光吸收对比度的高分辨率三维(3D)图像。光声显微镜的图像质量依赖于检测光声信号的超声换能器。基于法布里-珀罗(FP)聚合物腔的全光学超声传感器具有以下优点:宽带频率响应、宽角度覆盖范围和小尺寸。在此,我们展示了使用这种光学传感器进行小鼠脑成像的3D光声显微镜。在成像过程中使用加热激光来稳定传感器的腔长。为获取小鼠脑三维血管造影的数据,将传感器安装在平移台上并进行光栅扫描。重建了小鼠脑血管系统的3D图像,其高质量地显示了深度达8毫米的脑血管结构。进行了成像分割和双波长成像以证明该系统在临床前脑研究中的潜力。