ShanghaiTech University, School of Information Science and Technology, Shanghai, China.
Fujian Normal University, College of Photonic and Electronic Engineering, Fuzhou, China.
J Biomed Opt. 2024 Jan;29(Suppl 1):S11513. doi: 10.1117/1.JBO.29.S1.S11513. Epub 2023 Dec 28.
Photoacoustic (PA) imaging (PAI) represents an emerging modality within the realm of biomedical imaging technology. It seamlessly blends the wealth of optical contrast with the remarkable depth of penetration offered by ultrasound. These distinctive features of PAI hold tremendous potential for various applications, including early cancer detection, functional imaging, hybrid imaging, monitoring ablation therapy, and providing guidance during surgical procedures. The synergy between PAI and other cutting-edge technologies not only enhances its capabilities but also propels it toward broader clinical applicability.
The integration of PAI with advanced technology for PA signal detection, signal processing, image reconstruction, hybrid imaging, and clinical applications has significantly bolstered the capabilities of PAI. This review endeavor contributes to a deeper comprehension of how the synergy between PAI and other advanced technologies can lead to improved applications.
An examination of the evolving research frontiers in PAI, integrated with other advanced technologies, reveals six key categories named "PAI plus X." These categories encompass a range of topics, including but not limited to PAI plus treatment, PAI plus circuits design, PAI plus accurate positioning system, PAI plus fast scanning systems, PAI plus ultrasound sensors, PAI plus advanced laser sources, PAI plus deep learning, and PAI plus other imaging modalities.
After conducting a comprehensive review of the existing literature and research on PAI integrated with other technologies, various proposals have emerged to advance the development of PAI plus X. These proposals aim to enhance system hardware, improve imaging quality, and address clinical challenges effectively.
The progression of innovative and sophisticated approaches within each category of PAI plus X is positioned to drive significant advancements in both the development of PAI technology and its clinical applications. Furthermore, PAI not only has the potential to integrate with the above-mentioned technologies but also to broaden its applications even further.
光声(PA)成像是生物医学成像技术领域内新兴的模态。它无缝融合了光学对比度丰富的特点和超声提供的卓越穿透深度。PAI 的这些独特特点在各种应用中具有巨大的潜力,包括早期癌症检测、功能成像、混合成像、监测消融治疗以及在手术过程中提供指导。PAI 与其他前沿技术的协同作用不仅增强了其功能,还推动了其更广泛的临床应用。
PAI 与先进的 PA 信号检测、信号处理、图像重建、混合成像和临床应用技术的融合,极大地增强了 PAI 的能力。这项研究旨在深入了解 PAI 与其他先进技术的协同作用如何带来改进的应用。
考察 PAI 与其他先进技术相结合的研究前沿,揭示了六个名为“PAI 加 X”的关键类别。这些类别涵盖了一系列主题,包括但不限于 PAI 加治疗、PAI 加电路设计、PAI 加精确定位系统、PAI 加快速扫描系统、PAI 加超声传感器、PAI 加先进激光源、PAI 加深度学习以及 PAI 加其他成像模态。
在对 PAI 与其他技术集成的现有文献和研究进行全面综述后,提出了各种建议来推进 PAI 加 X 的发展。这些建议旨在增强系统硬件、提高成像质量并有效地应对临床挑战。
PAI 加 X 中每个类别的创新和复杂方法的进展有望推动 PAI 技术的发展及其临床应用的重大进展。此外,PAI 不仅有可能与上述技术集成,而且还有可能进一步拓宽其应用范围。