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一种用于非侵入性经颅光学血管成像(nTOVI)的简单方法。

A simple approach for non-invasive transcranial optical vascular imaging (nTOVI).

作者信息

Kalchenko Vyacheslav, Israeli David, Kuznetsov Yuri, Meglinski Igor, Harmelin Alon

机构信息

Department of Veterinary Resources, Weizmann Institute of Science, Rehovot, 76100, Israel.

Jerusalem Center for Mental Health, affiliated with the Hebrew University, Jerusalem, Israel.

出版信息

J Biophotonics. 2015 Nov;8(11-12):897-901. doi: 10.1002/jbio.201400140. Epub 2015 Apr 29.

DOI:10.1002/jbio.201400140
PMID:25924020
Abstract

In vivo imaging of cerebral vasculature is highly vital for clinicians and medical researchers alike. For a number of years non-invasive optical-based imaging of brain vascular network by using standard fluorescence probes has been considered as impossible. In the current paper controverting this paradigm, we present a robust non-invasive optical-based imaging approach that allows visualize major cerebral vessels at the high temporal and spatial resolution. The developed technique is simple to use, utilizes standard fluorescent dyes, inexpensive micro-imaging and computation procedures. The ability to clearly visualize middle cerebral artery and other major vessels of brain vascular network, as well as the measurements of dynamics of blood flow are presented. The developed imaging approach has a great potential in neuroimaging and can significantly expand the capabilities of preclinical functional studies of brain and notably contribute for analysis of cerebral blood circulation in disorder models. An example of 1 × 1.5 cm color-coded image of brain blood vessels of mouse obtained in vivo by transcranial optical vascular imaging (TOVI) approach through the intact cranium.

摘要

对临床医生和医学研究人员而言,脑脉管系统的体内成像都至关重要。多年来,使用标准荧光探针进行脑血管网络的非侵入性光学成像一直被认为是不可能的。在当前这篇反驳这一范式的论文中,我们提出了一种强大的非侵入性光学成像方法,该方法能够以高时空分辨率可视化主要脑血管。所开发的技术使用简单,采用标准荧光染料、廉价的显微成像和计算程序。展示了清晰可视化大脑中动脉和脑血管网络其他主要血管的能力,以及血流动力学测量结果。所开发的成像方法在神经成像方面具有巨大潜力,能够显著扩展脑临床前功能研究的能力,并尤其有助于分析疾病模型中的脑血液循环。通过完整颅骨经颅光学血管成像(TOVI)方法在体内获得的1×1.5厘米小鼠脑血管彩色编码图像示例。

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