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高速光声导波波前整形在散射介质中的光聚焦。

High-speed photoacoustic-guided wavefront shaping for focusing light in scattering media.

出版信息

Opt Lett. 2021 Mar 1;46(5):1165-1168. doi: 10.1364/OL.412572.

Abstract

Wavefront shaping is becoming increasingly attractive as it promises to enable various biomedical applications by breaking through the optical diffusion limit that prevents light focusing at depths larger than ∼1 in biological tissue. However, despite recent advancements in wavefront shaping technology, such as those exploiting non-invasive photoacoustic-guidance, in vivo demonstrations remain challenging mainly due to rapid tissue speckle decorrelation. In this work, we report a high-speed photoacoustic-guided wavefront shaping method with a relatively simple experimental setup, based on the characterization of a scattering medium with a real-valued intensity transmission matrix. We demonstrated light focusing through an optical diffuser by optimizing 4096 binary amplitude modulation modes of a digital micromirror device within ∼300, leading to a system runtime of 75 µs per input mode, which is 3 orders of magnitude smaller than the smallest runtime reported in literature so far using photoacoustic-guided wavefront shaping. Thus, our method is a solid step forward toward in vivo applications of wavefront shaping.

摘要

波前整形技术越来越受到关注,因为它有望通过突破光扩散限制来实现各种生物医学应用,而光扩散限制阻止了光在生物组织中的聚焦深度超过约 1 。然而,尽管最近在波前整形技术方面取得了进展,例如利用非侵入性光声引导,但活体演示仍然具有挑战性,主要是由于组织散斑的快速去相关。在这项工作中,我们报告了一种基于实值强度传输矩阵对散射介质进行特征描述的高速光声引导波前整形方法,该方法具有相对简单的实验设置。我们通过在约 300 内优化数字微镜器件的 4096 个二进制幅度调制模式来演示光通过光学扩散器的聚焦,从而使系统运行时间为每个输入模式 75 µs,这比迄今为止使用光声引导波前整形报告的最小运行时间小 3 个数量级。因此,我们的方法朝着波前整形的活体应用迈出了坚实的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c33f/8237830/30897d635d11/ol-46-5-1165-g001.jpg

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