Harrison Tyler, Ranasinghesagara Janaka C, Lu Huihong, Mathewson Kory, Walsh Andrew, Zemp Roger J
Department of Electrical and Computer Engineering, University of Alberta, Edmonton, Alberta, Canada.
Opt Express. 2009 Nov 23;17(24):22041-6. doi: 10.1364/OE.17.022041.
We report on the development of an imaging system capable of combined ultrasound and photoacoustic imaging based on a fast-scanning single-element 25-MHz ultrasound transducer and a unique light-delivery system. The system is capable of 20 ultrasound frames per second and slower photoacoustic frame rates limited by laser pulse-repetition rates. Laser and ultrasound pulses are interlaced for co-registration of photoacoustic and ultrasound images. In vivo imaging of a human finger permits ultrasonic visualization of vessel structures and speckle changes indicative of blood flow, while overlaid photoacoustic images highlight some small vessels that are not clear from the ultrasound scan. Photoacoustic images provide optical absorption contrast co-registered in the structural and blood-flow context of ultrasound with high-spatial resolution and may prove important for clinical diagnostics and basic science of the microvasculature.
我们报告了一种成像系统的开发情况,该系统基于快速扫描单元素25兆赫超声换能器和独特的光传输系统,能够进行超声和光声联合成像。该系统每秒能够采集20帧超声图像,光声帧率则受激光脉冲重复率限制,速度较慢。激光脉冲和超声脉冲相互交错,以实现光声图像和超声图像的配准。对人体手指进行的体内成像显示,超声能够可视化血管结构以及表明血流情况的散斑变化,而叠加的光声图像则突出显示了一些在超声扫描中不清晰的小血管。光声图像提供了在超声的结构和血流背景下配准的光学吸收对比度,具有高空间分辨率,可能对微血管的临床诊断和基础科学研究具有重要意义。