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基于发光二极管的光声成像系统的体内肿瘤血管成像。

In Vivo Tumor Vascular Imaging with Light Emitting Diode-Based Photoacoustic Imaging System.

机构信息

Department of Biomedical Engineering, Tufts University, Medford, MA 02155, USA.

Research & Business Development Division, Cyberdyne INC, Cambridge Innovation Center, 3013 Rotterdam, The Netherlands.

出版信息

Sensors (Basel). 2020 Aug 12;20(16):4503. doi: 10.3390/s20164503.

Abstract

Photoacoustic (PA) imaging has shown tremendous promise for imaging tumor vasculature and its function at deeper penetration depths without the use of exogenous contrast agents. Traditional PA imaging systems employ expensive and bulky class IV lasers with low pulse repetition rate, due to which its availability for preclinical cancer research is hampered. In this study, we evaluated the capability of a Light-Emitting Diode (LED)-based PA and ultrasound (US) imaging system for monitoring heterogeneous microvasculature in tumors (up to 10 mm in depth) and quantitatively compared the PA images with gold standard histology images. We used a combination of a 7 MHz linear array US transducer and 850 nm excitation wavelength LED arrays to image blood vessels in a subcutaneous tumor model. After imaging, the tumors were sectioned and stained for endothelial cells to correlate with PA images across similar cross-sections. Analysis of 30 regions of interest in tumors from different mice showed a statistically significant R-value of 0.84 where the areas with high blood vessel density had high PA response while low blood vessel density regions had low PA response. Our results confirm that LED-based PA and US imaging can provide 2D and 3D images of tumor vasculature and the potential it has as a valuable tool for preclinical cancer research.

摘要

光声(PA)成像是一种很有前途的成像技术,可以在不使用外源性对比剂的情况下,对肿瘤血管及其功能进行更深层次的穿透深度成像。传统的 PA 成像系统采用昂贵且庞大的第四类激光器,其脉冲重复率较低,因此其在临床前癌症研究中的应用受到限制。在这项研究中,我们评估了基于发光二极管(LED)的 PA 和超声(US)成像系统在监测肿瘤内异质微血管(深度可达 10 毫米)方面的能力,并将 PA 图像与金标准组织学图像进行了定量比较。我们使用 7 MHz 线性阵列 US 换能器和 850nm 激发波长 LED 阵列组合来对皮下肿瘤模型中的血管进行成像。成像后,对肿瘤进行切片并对内皮细胞进行染色,以与跨相似横截面的 PA 图像进行相关分析。对来自不同小鼠的 30 个肿瘤感兴趣区域的分析显示,高血管密度区域的 PA 响应高,而低血管密度区域的 PA 响应低,具有统计学意义的 R 值为 0.84。我们的结果证实,基于 LED 的 PA 和 US 成像可以提供肿瘤血管的 2D 和 3D 图像,并且作为临床前癌症研究的有价值工具具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc98/7472236/461bd6af7c9b/sensors-20-04503-g001.jpg

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