Su Jimmy L, Wang Bo, Wilson Katheryne E, Bayer Carolyn L, Chen Yun-Sheng, Kim Seungsoo, Homan Kimberly A, Emelianov Stanislav Y
Department of Biomedical Engineering, University of Texas at Austin, Austin, TX 78712 USA.
Expert Opin Med Diagn. 2010 Nov 1;4(6):497-510. doi: 10.1517/17530059.2010.529127.
Photoacoustic imaging is an imaging modality that derives image contrast from the optical absorption coefficient of the tissue being imaged. The imaging technique is able to differentiate between healthy and diseased tissue with either deeper penetration or higher resolution than other functional imaging modalities currently available. From a clinical standpoint, photoacoustic imaging has demonstrated safety and effectiveness in diagnosing diseased tissue regions using either endogenous tissue contrast or exogenous contrast agents. Furthermore, the potential of photoacoustic imaging has been demonstrated in various therapeutic interventions ranging from drug delivery and release to image-guided therapy and monitoring. AREAS COVERED IN THIS REVIEW: This article reviews the current state of photoacoustic imaging in biomedicine from a technological perspective, highlights various biomedical and clinical applications of photoacoustic imaging, and gives insights on future directions. WHAT THE READER WILL GAIN: Readers will learn about the various applications of photoacoustic imaging, as well as the various contrast agents that can be used to assist photoacoustic imaging. This review will highlight both pre-clinical and clinical uses for photoacoustic imaging, as well as discuss some of the challenges that must be addressed to move photoacoustic imaging into the clinical realm. TAKE HOME MESSAGE: Photoacoustic imaging offers unique advantages over existing imaging modalities. The imaging field is broad with many exciting applications for detecting and diagnosing diseased tissue or processes. Photoacoustics is also used in therapeutic applications to identify and characterize the pathology and then to monitor the treatment. Although the technology is still in its infancy, much work has been done in the pre-clinical arena, and photoacoustic imaging is fast approaching the clinical setting.
光声成像是一种成像方式,它从被成像组织的光吸收系数中获取图像对比度。与目前可用的其他功能成像方式相比,该成像技术能够以更深的穿透深度或更高的分辨率区分健康组织和患病组织。从临床角度来看,光声成像已证明在使用内源性组织对比度或外源性造影剂诊断患病组织区域方面具有安全性和有效性。此外,光声成像的潜力已在从药物递送和释放到图像引导治疗和监测等各种治疗干预中得到证明。
本文从技术角度综述了光声成像在生物医学中的当前状态,强调了光声成像的各种生物医学和临床应用,并对未来方向提供了见解。
读者将了解光声成像的各种应用,以及可用于辅助光声成像的各种造影剂。本综述将突出光声成像的临床前和临床用途,并讨论将光声成像引入临床领域必须解决的一些挑战。
光声成像相对于现有成像方式具有独特优势。该成像领域广泛,在检测和诊断患病组织或病变过程方面有许多令人兴奋的应用。光声成像还用于治疗应用中,以识别和表征病理状况,然后监测治疗效果。尽管该技术仍处于起步阶段,但在临床前领域已经开展了大量工作,并且光声成像正迅速走向临床应用。