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Optical focusing deep inside dynamic scattering media with near-infrared time-reversed ultrasonically encoded (TRUE) light

机译:光学聚焦深度内部动态散射介质,具有近红外时间反转超声编码(真)光

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摘要

Focusing light deep inside living tissue has not been achieved despite its promise to play a central role in biomedical imaging, optical manipulation and therapy. To address this challenge, internal-guide-star-based wavefront engineering techniques—for example, time-reversed ultrasonically encoded (TRUE) optical focusing—were developed. The speeds of these techniques, however, were limited to no greater than 1 Hz, preventing them from in vivo applications. Here we improve the speed of optical focusing deep inside scattering media by two orders of magnitude, and focus diffuse light inside a dynamic scattering medium having a speckle correlation time as short as 5.6 ms, typical of living tissue. By imaging a target, we demonstrate the first focusing of diffuse light inside a dynamic scattering medium containing living tissue. Since the achieved focusing speed approaches the tissue decorrelation rate, this work is an important step towards in vivo deep tissue noninvasive optical imaging, optogenetics and photodynamic therapy.
机译:尽管它有望在生物医学成像,光学操作和治疗中发挥核心作用,但仍无法将光聚焦到生物组织内部。为了应对这一挑战,开发了基于内部向导星的波前工程技术,例如时间反向超声编码(TRUE)光学聚焦。但是,这些技术的速度被限制为不超过1 Hz,从而阻止了它们在体内的应用。在这里,我们将光学聚焦在散射介质内部的速度提高了两个数量级,并将散射光聚焦在动态散射介质内部,该散射介质的斑点相关时间短于生物组织的5.6µms。通过对目标成像,我们演示了在包含活体组织的动态散射介质内部对散射光的首次聚焦。由于达到的聚焦速度接近组织去相关率,因此这项工作是朝着体内深层组织无创光学成像,光遗传学和光动力疗法迈出的重要一步。

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