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杂交光声和快速超分辨率超声成像。

Hybrid photoacoustic and fast super-resolution ultrasound imaging.

机构信息

Department of Electrical and Computer Engineering, University of Illinois Urbana-Champaign, Urbana, IL, USA.

Beckman Institute for Advanced Science and Technology, University of Illinois Urbana-Champaign, Urbana, IL, USA.

出版信息

Nat Commun. 2023 Apr 18;14(1):2191. doi: 10.1038/s41467-023-37680-w.

Abstract

The combination of photoacoustic (PA) imaging and ultrasound localization microscopy (ULM) with microbubbles has great potential in various fields such as oncology, neuroscience, nephrology, and immunology. Here we developed an interleaved PA/fast ULM imaging technique that enables super-resolution vascular and physiological imaging in less than 2 seconds per frame in vivo. By using sparsity-constrained (SC) optimization, we accelerated the frame rate of ULM up to 37 times with synthetic data and 28 times with in vivo data. This allows for the development of a 3D dual imaging sequence with a commonly used linear array imaging system, without the need for complicated motion correction. Using the dual imaging scheme, we demonstrated two in vivo scenarios challenging to image with either technique alone: the visualization of a dye-labeled mouse lymph node showing nearby microvasculature, and a mouse kidney microangiography with tissue oxygenation. This technique offers a powerful tool for mapping tissue physiological conditions and tracking the contrast agent biodistribution non-invasively.

摘要

光声(PA)成像和超声定位显微镜(ULM)与微泡的结合在肿瘤学、神经科学、肾脏病学和免疫学等各个领域具有巨大的潜力。在这里,我们开发了一种交错的 PA/快速 ULM 成像技术,能够在不到 2 秒/帧的时间内实现体内超分辨率血管和生理成像。通过使用稀疏约束(SC)优化,我们使用合成数据将 ULM 的帧率加速了 37 倍,使用体内数据加速了 28 倍。这使得能够在不使用复杂的运动校正的情况下,使用常用的线性阵列成像系统开发 3D 双成像序列。使用双成像方案,我们展示了两个单独使用一种技术难以成像的体内场景:标记染料的小鼠淋巴结显示附近微血管的可视化,以及具有组织氧合作用的小鼠肾脏微血管成像。该技术为绘制组织生理条件和非侵入性跟踪造影剂生物分布提供了强大的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dccd/10113238/82eeb092ef9e/41467_2023_37680_Fig1_HTML.jpg

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