IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Apr;64(4):688-693. doi: 10.1109/TUFFC.2017.2661238. Epub 2017 Jan 30.
A combined photoacoustic-ultrasound (PAUS) tomography system is introduced using ring-array and novel aperture encoding schemes. The ultrasound subsystem is able to achieve diffraction limited half-wavelength isotropic in-plane spatial resolution unlike previous systems. S-sequence aperture encoding improves signal-to-noise ratio (SNR) for the ultrasound tomography (UST) subsystem. We measured an average resolution of [Formula: see text] for S-sequence UST and a resolution of [Formula: see text] for photoacoustic tomography. We were able to measure SNR improvement using S-sequence spatial encoding using tissue-mimicking phantoms, and we displayed a composite PAUS phantom image.
本文介绍了一种采用环形阵列和新颖孔径编码方案的光声-超声(PAUS)层析成像系统。与以前的系统不同,超声子系统能够实现半波长各向同性的衍射极限平面内空间分辨率。S 序列孔径编码提高了超声层析成像(UST)子系统的信噪比(SNR)。我们测量了 S 序列 UST 的平均分辨率为[Formula: see text],光声断层成像的分辨率为[Formula: see text]。我们能够使用组织模拟体测量 S 序列空间编码的 SNR 提高,并显示了复合 PAUS 体模图像。