Dima Alexander, Ntziachristos Vasilis
Institute for Biological and Medical Imaging, Chair for Biological Imaging , Technische Univeristät München & Helmholtz Zentrum München, Munich , Germany
Expert Opin Med Diagn. 2011 May;5(3):263-72. doi: 10.1517/17530059.2011.561315. Epub 2011 Mar 1.
Optoacoustic (photoacoustic) imaging offers visualization of optical contrast in tissues, within several millimeters to centimeters, with resolutions that are typical of ultrasound imaging. This performance can offer a natural extension to widespread optical microscopy approaches, for applications from small animals to humans.
An increasing number of optoacoustic approaches are considered for biomedical imaging. Implementations range from handheld and endoscopic operations to fixed scanner set-ups that can address a wide range of preclinical and clinical needs. This article illuminates aspects of the underlying principles of optoacoustic imaging operation and critically reviews the major system trends developed for clinical application. In addition to anatomical imaging, typically performed using single wavelength illumination, multispectral methods are also reviewed as they pertain to functional and molecular imaging. This article also highlights the advantages and limitations as well as the potential of this technology for clinical practice.
Optoacoustic imaging is an emerging and highly promising area of the imaging sciences that can offer high-resolution optical visualization deep within tissues. Therefore, it offers a promising alternative to existing optical systems developed for clinical use, which are generally limited to superficial or low-resolution imaging. These up-and-coming features offer a wider variety of optoacoustic approaches that are likely to be clinically deployed in the near future.
光声成像能够在几毫米到几厘米的组织深度内实现光学对比度的可视化,其分辨率与超声成像相当。这种性能可以自然地扩展广泛应用于从小动物到人类的光学显微镜方法。
越来越多的光声方法被用于生物医学成像。其应用范围从手持式和内窥镜操作到固定扫描仪设置,可满足广泛的临床前和临床需求。本文阐述了光声成像操作的基本原理,并对为临床应用开发的主要系统趋势进行了批判性综述。除了通常使用单波长照明进行的解剖成像外,还对与功能和分子成像相关的多光谱方法进行了综述。本文还强调了该技术在临床实践中的优势、局限性以及潜力。
光声成像是成像科学中一个新兴且极具前景的领域,它能够在组织深处提供高分辨率的光学可视化。因此,它为现有的临床光学系统提供了一个有前景的替代方案,现有临床光学系统通常限于浅表或低分辨率成像。这些新出现的特性提供了更多样化的光声方法,有望在不久的将来应用于临床。