Sheng Qiwei, Wang Kun, Matthews Thomas P, Xia Jun, Zhu Liren, Wang Lihong V, Anastasio Mark A
IEEE Trans Med Imaging. 2015 Dec;34(12):2443-58. doi: 10.1109/TMI.2015.2437356.
Photoacoustic computed tomography (PACT) is an emerging computed imaging modality that exploits optical contrast and ultrasonic detection principles to form images of the absorbed optical energy density within tissue. When the imaging system employs conventional piezoelectric ultrasonic transducers, the ideal photoacoustic (PA) signals are degraded by the transducers' acousto-electric impulse responses (EIRs) during the measurement process. If unaccounted for, this can degrade the accuracy of the reconstructed image. In principle, the effect of the EIRs on the measured PA signals can be ameliorated via deconvolution; images can be reconstructed subsequently by application of a reconstruction method that assumes an idealized EIR. Alternatively, the effect of the EIR can be incorporated into an imaging model and implicitly compensated for during reconstruction. In either case, the efficacy of the correction can be limited by errors in the assumed EIRs. In this work, a joint optimization approach to PACT image reconstruction is proposed for mitigating errors in reconstructed images that are caused by use of an inaccurate EIR. The method exploits the bi-linear nature of the imaging model and seeks to refine the measured EIR during the process of reconstructing the sought-after absorbed optical energy density. Computer-simulation and experimental studies are conducted to investigate the numerical properties of the method and demonstrate its value for mitigating image distortions and enhancing the visibility of fine structures.
光声计算机断层扫描(PACT)是一种新兴的计算机成像模态,它利用光学对比度和超声检测原理来形成组织内吸收光能量密度的图像。当成像系统采用传统的压电超声换能器时,理想的光声(PA)信号在测量过程中会因换能器的声电脉冲响应(EIR)而退化。如果不加以考虑,这会降低重建图像的准确性。原则上,EIR对测量的PA信号的影响可以通过反卷积来改善;随后可以通过应用假设理想化EIR的重建方法来重建图像。或者,可以将EIR的影响纳入成像模型,并在重建过程中进行隐式补偿。在这两种情况下,校正的效果都可能受到假设EIR中的误差的限制。在这项工作中,提出了一种用于PACT图像重建的联合优化方法,以减轻因使用不准确的EIR而导致的重建图像中的误差。该方法利用成像模型的双线性性质,并试图在重建所需的吸收光能量密度的过程中优化测量的EIR。进行了计算机模拟和实验研究,以研究该方法的数值特性,并证明其在减轻图像失真和增强精细结构可见性方面的价值。