High resolution imaging beyond the acoustic diffraction limit in deep tissue via ultrasound-switchable NIR fluorescence

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作者
Yanbo Pei
Ming-Yuan Wei
Bingbing Cheng
Yuan Liu
Zhiwei Xie
Kytai Nguyen
Baohong Yuan
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[1] The University of Texas at Arlington,Department of Bioengineering
[2] Joint Biomedical Engineering Program,Department of Bioengineering
[3] The University of Texas at Arlington and The University of Texas Southwestern Medical Center at Dallas,undefined
[4] The Pennsylvania State University,undefined
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Fluorescence imaging in deep tissue with high spatial resolution is highly desirable because it can provide details about tissue's structural, functional and molecular information. Unfortunately, current fluorescence imaging techniques are limited either in penetration depth (microscopy) or spatial resolution (diffuse light based imaging) as a result of strong light scattering in deep tissue. To overcome this limitation, we developed an ultrasound-switchable fluorescence (USF) imaging technique whereby ultrasound was used to switch on/off the emission of near infrared (NIR) fluorophores. We synthesized and characterized unique NIR USF contrast agents. The excellent switching properties of these agents, combined with the sensitive USF imaging system developed in this study, enabled us to image fluorescent targets in deep tissue with spatial resolution beyond the acoustic diffraction limit.
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