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用于体内动力学多尺度成像的先进光声方法。

Advanced optoacoustic methods for multiscale imaging of in vivo dynamics.

机构信息

Institute for Biological and Medical Imaging (IBMI), Helmholtz Center Munich, Ingolstädter Landstr. 1, 85764 Neuherberg, Germany.

Department of Biomedical Engineering, Technion - Israel Institute of Technology, 32000 Haifa, Israel.

出版信息

Chem Soc Rev. 2017 Apr 18;46(8):2158-2198. doi: 10.1039/c6cs00765a.

Abstract

Visualization of dynamic functional and molecular events in an unperturbed in vivo environment is essential for understanding the complex biology of living organisms and of disease state and progression. To this end, optoacoustic (photoacoustic) sensing and imaging have demonstrated the exclusive capacity to maintain excellent optical contrast and high resolution in deep-tissue observations, far beyond the penetration limits of modern microscopy. Yet, the time domain is paramount for the observation and study of complex biological interactions that may be invisible in single snapshots of living systems. This review focuses on the recent advances in optoacoustic imaging assisted by smart molecular labeling and dynamic contrast enhancement approaches that enable new types of multiscale dynamic observations not attainable with other bio-imaging modalities. A wealth of investigated new research topics and clinical applications is further discussed, including imaging of large-scale brain activity patterns, volumetric visualization of moving organs and contrast agent kinetics, molecular imaging using targeted and genetically expressed labels, as well as three-dimensional handheld diagnostics of human subjects.

摘要

在不受干扰的体内环境中观察动态功能和分子事件对于理解生物体的复杂生物学以及疾病状态和进展至关重要。为此,光声(光声)传感和成像已经证明了在深层组织观察中保持优异的光学对比度和高分辨率的独特能力,远远超出了现代显微镜的穿透极限。然而,对于观察和研究复杂的生物相互作用,时域是至关重要的,因为这些相互作用在活系统的单个快照中可能是不可见的。本综述重点介绍了智能分子标记和动态对比增强方法辅助的光声成像的最新进展,这些方法能够实现其他生物成像模式无法实现的新型多尺度动态观察。还进一步讨论了大量研究的新课题和临床应用,包括大尺度脑活动模式成像、运动器官的体积可视化和对比剂动力学、使用靶向和基因表达标记的分子成像,以及对人体的三维手持式诊断。

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