Nyayapathi Nikhila, Zheng Emily, Zhou Qifa, Doyley Marvin, Xia Jun
Electrical and Computer Engineering, University of Rochester, Rochester, New York, 14627.
Department of Biomedical Engineering, University at Buffalo, Buffalo, New York, 14226.
Front Photon. 2024;5. doi: 10.3389/fphot.2024.1359784. Epub 2024 Feb 26.
Photoacoustic imaging is a novel biomedical imaging modality that has emerged over the recent decades. Due to the conversion of optical energy into the acoustic wave, photoacoustic imaging offers high-resolution imaging in depth beyond the optical diffusion limit. Photoacoustic imaging is frequently used in conjunction with ultrasound as a hybrid modality. The combination enables the acquisition of both optical and acoustic contrasts of tissue, providing functional, structural, molecular, and vascular information within the same field of view. In this review, we first described the principles of various photoacoustic and ultrasound imaging techniques and then classified the dual-modal imaging systems based on their preclinical and clinical imaging applications. The advantages of dual-modal imaging were thoroughly analyzed. Finally, the review ends with a critical discussion of existing developments and a look toward the future.
光声成像是近几十年来出现的一种新型生物医学成像模态。由于光能转换为声波,光声成像能够在超出光扩散极限的深度进行高分辨率成像。光声成像经常与超声结合作为一种混合模态使用。这种结合能够获取组织的光学和声学对比度,在同一视野内提供功能、结构、分子和血管信息。在本综述中,我们首先描述了各种光声和超声成像技术的原理,然后根据其临床前和临床成像应用对双模态成像系统进行了分类。深入分析了双模态成像的优势。最后,本综述以对现有进展的批判性讨论和对未来的展望结束。