Yoo Jinhee, Oh Donghyeon, Kim Chulhong, Kim Hyung Ham, Um Ji-Yong
School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, Pohang 37673, Republic of Korea.
Contributed equally.
Biomed Opt Express. 2022 Dec 7;14(1):89-105. doi: 10.1364/BOE.476453. eCollection 2023 Jan 1.
Photoacoustic (PA) imaging is a high-fidelity biomedical imaging technique based on the principle of molecular-specific optical absorption of biological tissue constitute. Because PA imaging shares the same basic principle as that of ultrasound (US) imaging, the use of PA/US dual-modal imaging can be achieved using a single system. However, because PA imaging is limited to a shallower depth than US imaging due to the optical extinction in biological tissue, the PA signal yields a lower signal-to-noise ratio (SNR) than US images. To selectively amplify the PA signal, we propose a switchable preamplifier for acoustic-resolution PA microscopy implemented on an application-specific integrated circuit. Using the preamplifier, we measured the increments in the SNR with both carbon lead and wire phantoms. Furthermore, whole-body PA/US imaging of a mouse with a preamplifier showed enhancement of SNR in deep tissues, unveiling deeply located organs and vascular networks. By selectively amplifying the PA signal range to a level similar to that of the US signal without contrast agent administration, our switchable amplifier strengthens the mutual complement between PA/US imaging. PA/US imaging is impending toward clinical translation, and we anticipate that this study will help mitigate the imbalance of image depth between the two imaging modalities.
光声(PA)成像是一种基于生物组织分子特异性光吸收原理的高保真生物医学成像技术。由于PA成像与超声(US)成像具有相同的基本原理,因此可以使用单个系统实现PA/US双模态成像。然而,由于生物组织中的光衰减,PA成像的深度比US成像浅,因此PA信号的信噪比(SNR)低于US图像。为了选择性地放大PA信号,我们提出了一种在专用集成电路上实现的用于声学分辨率PA显微镜的可切换前置放大器。使用该前置放大器,我们测量了碳铅和线体模的SNR增量。此外,使用前置放大器对小鼠进行全身PA/US成像显示深部组织的SNR增强,揭示了深部器官和血管网络。通过在不使用造影剂的情况下将PA信号范围选择性地放大到与US信号相似的水平,我们的可切换放大器加强了PA/US成像之间的相互补充。PA/US成像即将走向临床转化,我们预计这项研究将有助于缓解两种成像方式之间图像深度的不平衡。