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An ICCD camera-based time-domain ultrasound-switchable fluorescence imaging system

机译:基于ICCD相机的时域超声切换荧光成像系统

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Fluorescence imaging in centimeter-deep tissues with high resolution is highly desirable for many biomedical applications. Recently, we have developed a new imaging modality, ultrasound-switchable fluorescence (USF) imaging, for achieving this goal. In our previous work, we successfully achieved USF imaging with several types of USF contrast agents and imaging systems. In this study, we introduced a new USF imaging system: an intensified charge-coupled device (ICCD) camera-based, time-domain USF imaging system. We demonstrated the principle of time-domain USF imaging by using two USF contrast agents. With a series of USF imaging experiments, we demonstrated the tradeoffs among different experimental parameters (i.e., data acquisition time, including CCD camera recording time and intensifier gate delay; focused ultrasound (FU) power; and imaging depth) and the image qualities (i.e., signal-to-noise ratio, spatial resolution, and temporal resolution). In this study, we also discussed several imaging strategies for achieving a high-quality USF image via this time-domain system.
机译:对于许多生物医学应用,非常希望具有高分辨率的厘米深组织中的荧光成像。最近,我们开发了一种新的成像模型,超声切换荧光(USF)成像,用于实现这一目标。在我们以前的工作中,我们成功地实现了USF成像,具有几种类型的USF造影剂和成像系统。在这项研究中,我们推出了一种新的USF成像系统:强化电荷耦合器件(ICCD)基于相机,时域USF成像系统。我们通过使用两种USF造影剂来证明了时域USF成像的原理。通过一系列USF成像实验,我们展示了不同实验参数的权衡(即数据采集时间,包括CCD摄像机录制时间和增强器门延迟;聚焦超声(FU)电源;和成像深度)和图像质量(即,信噪比,空间分辨率和时间分辨率)。在这项研究中,我们还讨论了通过该时域系统实现高质量USF图像的几种成像策略。

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