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基于透明超声换能器的四重超声、光声、光学相干和荧光融合成像。

Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer.

机构信息

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, 37673 Pohang, Republic of Korea.

Medical Device Innovation Center, Pohang University of Science and Technology, 37673 Pohang, Republic of Korea.

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 16;118(11). doi: 10.1073/pnas.1920879118.

Abstract

Ultrasound and optical imagers are used widely in a variety of biological and medical applications. In particular, multimodal implementations combining light and sound have been actively investigated to improve imaging quality. However, the integration of optical sensors with opaque ultrasound transducers suffers from low signal-to-noise ratios, high complexity, and bulky form factors, significantly limiting its applications. Here, we demonstrate a quadruple fusion imaging system using a spherically focused transparent ultrasound transducer that enables seamless integration of ultrasound imaging with photoacoustic imaging, optical coherence tomography, and fluorescence imaging. As a first application, we comprehensively monitored multiparametric responses to chemical and suture injuries in rats' eyes in vivo, such as corneal neovascularization, structural changes, cataracts, and inflammation. As a second application, we successfully performed multimodal imaging of tumors in vivo, visualizing melanomas without using labels and visualizing 4T1 mammary carcinomas using PEGylated gold nanorods. We strongly believe that the seamlessly integrated multimodal system can be used not only in ophthalmology and oncology but also in other healthcare applications with broad impact and interest.

摘要

超声和光学成像仪广泛应用于各种生物和医学应用中。特别是,结合光和声音的多模态实现已经被积极研究以提高成像质量。然而,将光学传感器与不透明的超声换能器集成在一起存在信噪比低、复杂性高和体积庞大等问题,这极大地限制了其应用。在这里,我们展示了一种使用球形聚焦透明超声换能器的四重融合成像系统,该系统能够实现超声成像与光声成像、光学相干断层扫描和荧光成像的无缝集成。作为第一个应用,我们全面监测了大鼠眼睛对化学和缝线损伤的多参数反应,如角膜新生血管、结构变化、白内障和炎症。作为第二个应用,我们成功地进行了体内肿瘤的多模态成像,无需使用标记即可可视化黑色素瘤,并使用聚乙二醇化金纳米棒可视化 4T1 乳腺癌。我们坚信,这种无缝集成的多模态系统不仅可以用于眼科和肿瘤学,还可以用于其他具有广泛影响和兴趣的医疗保健应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d171/7980418/c409beecc7a9/pnas.1920879118fig01.jpg

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