Lan Hengrong, Jiang Daohuai, Gao Feng, Gao Fei
Hybrid Imaging System Laboratory, Shanghai Engineering Research Center of Intelligent Vision and Imaging, School of Information Science and Technology, ShanghaiTech University, Shanghai, 201210, China.
Chinese Academy of Sciences, Shanghai Institute of Microsystem and Information Technology, Shanghai, 200050, China.
Photoacoustics. 2021 May 5;22:100270. doi: 10.1016/j.pacs.2021.100270. eCollection 2021 Jun.
Photoacoustic computed tomography (PACT) combines the optical contrast of optical imaging and the penetrability of sonography. In this work, we develop a novel PACT system to provide real-time imaging, which is achieved by a 120-elements ultrasound array only using a single data acquisition (DAQ) channel. To reduce the channel number of DAQ, we superimpose 30 nearby channels' signals together in the analog domain, and shrinking to 4 channels of data (120/30 = 4). Furthermore, a four-to-one delay-line module is designed to combine these four channels' data into one channel before entering the single-channel DAQ, followed by decoupling the signals after data acquisition. To reconstruct the image from four superimposed 30-channels' PA signals, we train a dedicated deep learning model to reconstruct the final PA image. In this paper, we present the preliminary results of phantom and in-vivo experiments, which manifests its robust real-time imaging performance. The significance of this novel PACT system is that it dramatically reduces the cost of multi-channel DAQ module (from 120 channels to 1 channel), paving the way to a portable, low-cost and real-time PACT system.
光声计算机断层扫描(PACT)结合了光学成像的光学对比度和超声成像的穿透性。在这项工作中,我们开发了一种新型的PACT系统以提供实时成像,这是通过仅使用单个数据采集(DAQ)通道的120阵元超声阵列实现的。为了减少DAQ的通道数,我们在模拟域中将30个相邻通道的信号叠加在一起,并缩减为4个数据通道(120/30 = 4)。此外,设计了一个四合一延迟线模块,以便在进入单通道DAQ之前将这四个通道的数据合并为一个通道,然后在数据采集后对信号进行解耦。为了从四个叠加的30通道光声信号重建图像,我们训练了一个专用的深度学习模型来重建最终的光声图像。在本文中,我们展示了体模和体内实验的初步结果,这表明了其强大的实时成像性能。这种新型PACT系统的意义在于它显著降低了多通道DAQ模块的成本(从120通道降至1通道),为便携式、低成本和实时PACT系统铺平了道路。