Zemp Roger J
Department of Electrical and Computer Engineering, University of Alberta, 9107-116 Street,Edmonton, Alberta, Canada T6G 2V4.
Appl Opt. 2010 Jun 20;49(18):3566-72. doi: 10.1364/AO.49.003566.
Quantitative imaging of optical properties of biological tissues with high resolution has been a long-sought-after goal of many research groups. Photoacoustic imaging is a hybrid bio-optical imaging technique offering optical absorption contrast with ultrasonic spatial resolution. While photoacoustic methods offer significant promise for high-resolution optical imaging, quantification has thus far proved challenging. In this paper, a noniterative reconstruction technique for producing quantitative photoacoustic images of absorption perturbations is introduced for the case when the optical properties of the turbid background are known and when multiple optical illumination locations are used. Through theoretical developments and computational examples it is demonstrated that multiple-optical-source photoacoustic imaging can produce quantitative optical absorption reconstructions. The combination of optical and photoacoustic measurements is shown to yield improved reconstruction stability.
对生物组织光学特性进行高分辨率定量成像一直是许多研究团队长期追求的目标。光声成像是一种混合生物光学成像技术,它能提供具有超声空间分辨率的光吸收对比度。虽然光声方法在高分辨率光学成像方面前景广阔,但迄今为止,定量分析仍具有挑战性。本文介绍了一种非迭代重建技术,用于在已知浑浊背景光学特性且使用多个光照射位置的情况下,生成吸收扰动的定量光声图像。通过理论推导和计算实例表明,多光源光声成像可以实现定量光吸收重建。结果表明,光学测量和光声测量相结合可提高重建稳定性。