Cai De, Li Zhongfei, Li Yao, Guo Zhendong, Chen Sung-Liang
Opt Express. 2017 Jan 23;25(2):1421-1434. doi: 10.1364/OE.25.001421.
Acoustic-resolution photoacoustic microscopy (ARPAM) plays an important role in studying the microcirculation system of biological tissues with deep penetration. High lateral resolution of ARPAM is achieved by using a high numerical aperture acoustic transducer. The deteriorated lateral resolution in the out-of-focus region can be alleviated by synthetic aperture focusing technique (SAFT). Previously, we reported a three-dimensional (3D) deconvolution ARPAM to improve both lateral and axial resolutions in the focus region. In this study, we present our extension of resolution enhancement to the out-of-focus region based on two-dimensional SAFT combined with the 3D deconvolution (SAFT+Deconv). In both the focus and out-of-focus regions, depth-independent lateral resolution provided by SAFT, together with inherently depth-independent axial resolution, ensures a depth-independent point spread function for 3D deconvolution algorithm. Imaging of 10 μm polymer beads shows that SAFT+Deconv ARPAM improves the -6 dB lateral resolutions from 65-700 μm to 20-29 μm, and the -6 dB axial resolutions from 35-42 μm to 12-19 μm in an extended depth of focus (DOF) of ∼2 mm. The signal-to-noise ratio is also increased by 6-30 dB. The resolution enhancement in three dimensions is validated by in vivo imaging of a mouse's dorsal subcutaneous microvasculature. Our results suggest that SAFT+Deconv ARPAM may allow fine spatial resolution with deep penetration and extended DOF for biomedical photoacoustic applications.
声学分辨率光声显微镜(ARPAM)在深入研究生物组织的微循环系统方面发挥着重要作用。通过使用高数值孔径的声学换能器可实现ARPAM的高横向分辨率。合成孔径聚焦技术(SAFT)可以减轻离焦区域横向分辨率的下降。此前,我们报道了一种三维(3D)去卷积ARPAM,以提高聚焦区域的横向和轴向分辨率。在本研究中,我们展示了基于二维SAFT与3D去卷积(SAFT+去卷积)相结合的分辨率增强方法在离焦区域的扩展。在聚焦和离焦区域,SAFT提供的与深度无关的横向分辨率,以及固有的与深度无关的轴向分辨率,确保了3D去卷积算法具有与深度无关的点扩散函数。对10μm聚合物微珠的成像表明,SAFT+去卷积ARPAM在约2mm的扩展焦深(DOF)中将-6dB横向分辨率从65-700μm提高到20-29μm,将-6dB轴向分辨率从35-42μm提高到12-19μm。信噪比也提高了6-30dB。通过对小鼠背部皮下微血管的体内成像验证了三维分辨率的增强。我们的结果表明,SAFT+去卷积ARPAM可能为生物医学光声应用提供具有深度穿透和扩展DOF的精细空间分辨率。