Robles Francisco E, Wilson Christy, Grant Gerald, Wax Adam
Department of Biomedical Engineering and Fitzpatrick Institute for Photonics, Duke University, Durham, North Carolina 27708, USA ; Medical Physics Program, Duke University, Durham, North Carolina 27708, USA.
Nat Photonics. 2011 Dec 1;5(12):744-747. doi: 10.1038/nphoton.2011.257. Epub 2011 Oct 23.
Molecular imaging holds a pivotal role in medicine due to its ability to provide invaluable insight into disease mechanisms at molecular and cellular levels. To this end, various techniques have been developed for molecular imaging, each with its own advantages and disadvantages(1-4). For example, fluorescence imaging achieves micrometre-scale resolution, but has low penetration depths and is mostly limited to exogenous agents. Here, we demonstrate molecular imaging of endogenous and exogenous chromophores using a novel form of spectroscopic optical coherence tomography. Our approach consists of using a wide spectral bandwidth laser source centred in the visible spectrum, thereby allowing facile assessment of haemoglobin oxygen levels, providing contrast from readily available absorbers, and enabling true-colour representation of samples. This approach provides high spectral fidelity while imaging at the micrometre scale in three dimensions. Molecular imaging true-colour spectroscopic optical coherence tomography (METRiCS OCT) has significant implications for many biomedical applications including ophthalmology, early cancer detection, and understanding fundamental disease mechanisms such as hypoxia and angiogenesis.
分子成像在医学中发挥着关键作用,因为它能够在分子和细胞水平上为疾病机制提供宝贵的见解。为此,已经开发了各种用于分子成像的技术,每种技术都有其自身的优缺点(1-4)。例如,荧光成像可实现微米级分辨率,但穿透深度较低,并且大多限于外源性试剂。在此,我们展示了使用一种新型的光谱光学相干断层扫描技术对内源性和外源性发色团进行分子成像。我们的方法包括使用以可见光谱为中心的宽光谱带宽激光源,从而便于评估血红蛋白氧水平,从现成的吸收体提供对比度,并实现样品的真彩色呈现。这种方法在三维微米尺度成像时提供了高光谱保真度。分子成像真彩色光谱光学相干断层扫描(METRiCS OCT)对许多生物医学应用具有重要意义,包括眼科、早期癌症检测以及理解诸如缺氧和血管生成等基本疾病机制。