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观察与聆听光线:全身光子成像的发展历程

Looking and listening to light: the evolution of whole-body photonic imaging.

作者信息

Ntziachristos Vasilis, Ripoll Jorge, Wang Lihong V, Weissleder Ralph

机构信息

Center for Molecular Imaging Research, Massachusetts General Hospital & Harvard Medical School CNY149, 13th street 5406, Charlestown, Massachusetts 02129, USA.

出版信息

Nat Biotechnol. 2005 Mar;23(3):313-20. doi: 10.1038/nbt1074.

Abstract

Optical imaging of live animals has grown into an important tool in biomedical research as advances in photonic technology and reporter strategies have led to widespread exploration of biological processes in vivo. Although much attention has been paid to microscopy, macroscopic imaging has allowed small-animal imaging with larger fields of view (from several millimeters to several centimeters depending on implementation). Photographic methods have been the mainstay for fluorescence and bioluminescence macroscopy in whole animals, but emphasis is shifting to photonic methods that use tomographic principles to noninvasively image optical contrast at depths of several millimeters to centimeters with high sensitivity and sub-millimeter to millimeter resolution. Recent theoretical and instrumentation advances allow the use of large data sets and multiple projections and offer practical systems for quantitative, three-dimensional whole-body images. For photonic imaging to fully realize its potential, however, further progress will be needed in refining optical inversion methods and data acquisition techniques.

摘要

随着光子技术和报告策略的进步推动了对体内生物过程的广泛探索,活体动物的光学成像已发展成为生物医学研究中的一项重要工具。尽管显微镜技术备受关注,但宏观成像已实现了具有更大视野的小动物成像(根据实施方式,视野范围从几毫米到几厘米不等)。摄影方法一直是全动物荧光和生物发光宏观成像的主要手段,但目前重点正转向利用断层成像原理的光子方法,这些方法能够以高灵敏度和亚毫米到毫米的分辨率对几毫米到几厘米深度的光学对比度进行无创成像。最近的理论和仪器技术进步使得能够使用大数据集和多个投影,并提供了用于定量三维全身图像的实用系统。然而,为了使光子成像充分发挥其潜力,在完善光学反演方法和数据采集技术方面仍需要进一步的进展。

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