Department of Physics, Karl-Franzens University Graz, 8010 Graz, Austria.
J Biophotonics. 2013 Jun;6(6-7):549-59. doi: 10.1002/jbio.201200223. Epub 2013 May 5.
A setup is proposed that provides perfectly co-registered photoacoustic (PA) and ultrasound (US) section images. Photoacoustic and ultrasound backscatter signals are generated by laser pulses coming from the same laser system, the latter by absorption of some of the laser energy on an optically absorbing target near the imaged object. By measuring both signals with the same optical detector, which is focused into the selected section by use of a cylindrical acoustic mirror, the information for both images is acquired simultaneously. Co-registered PA and US images are obtained after applying the inverse Radon transform to the data, which are gathered while rotating the object relative to the detector. Phantom experiments demonstrate a resolution of 1.1 mm between the sections of both imaging modalities and a in-plane resolution of about 60 µm and 120 µm for the US and PA modes, respectively. The complementary contrast mechanisms of the two modalities are shown by images of a zebrafish.
提出了一种设置方案,可提供完全配准的光声(PA)和超声(US)截面图像。光声和超声背向散射信号由来自同一激光系统的激光脉冲产生,后者由在成像物体附近的光吸收靶上吸收部分激光能量产生。通过使用圆柱形声反射镜将相同的光学检测器聚焦到所选截面,用该检测器同时测量两个信号,从而获取两个图像的信息。在旋转物体相对于检测器的同时收集数据,并对其进行逆 Radon 变换,即可获得配准的 PA 和 US 图像。通过对鱼的成像,验证了两种模态的分辨率分别为 1.1mm 和 60μm 及 120μm。两种模态的互补对比机制通过斑马鱼的图像显示。