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High-resolution imaging in a deep turbid medium based on an ultrasound-switchable fluorescence technique

机译:基于超声可切换荧光技术的深浊介质中的高分辨率成像

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摘要

The spatial resolution of fluorescence imaging techniques in deep optically turbid media such as tissues is limited by photon diffusion. To break the diffusion limit and achieve high-resolution and deep-tissue fluorescence imaging, a fundamentally different method was demonstrated based on a concept of ultrasound-switchable fluorescence. The results showed that a small fluorescent tube with a diameter of ∼180 μm at a depth of ∼20 mm in an optical scattering medium (μs′≈3.2 and μa≈0.026 cm-1) can be clearly imaged with a size of ∼260 μm. The depth-to-resolution ratio is shown to be about one order of magnitude better than other deep-tissue fluorescence imaging techniques.
机译:在深光学混浊介质(例如组织)中,荧光成像技术的空间分辨率受到光子扩散的限制。为了打破扩散极限并实现高分辨率和深层组织荧光成像,基于超声可切换荧光的概念,展示了一种根本不同的方法。结果表明,在光散射介质中(μ s '≈3.2和μ< sub> a ≈0.026cm -1 )可以清晰地成像,尺寸约为260μm。深度分辨率比显示为比其他深层组织荧光成像技术好约一个数量级。

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