通过失活超分辨率实现单细胞声学定位。

NPJ acoustics Pub Date : 2025-01-01 Epub Date: 2025-04-24 DOI:10.1038/s44384-025-00008-7
Cameron A B Smith, Mengtong Duan, Jipeng Yan, Laura Taylor, Mikhail Shapiro, Meng-Xing Tang
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引用次数: 0

摘要

光激活定位显微镜(PALM)已经改变了游戏规则,打破了空间分辨率的衍射极限。本研究提出了失活超分辨率(DSR)方法,该方法利用基因可编码造影剂的失活,使我们能够超分辨率和精确定位单个细胞,因为它们在传统b模式成像无法解决的结构中导航。DSR利用了气体囊泡(GVs),这是一种充满空气的亚微米颗粒,已经在基因工程细菌和哺乳动物细胞中表达,以产生声学对比。我们的实验结果表明,DSR可以区分标准b超图像无法通过超定位单个哺乳动物细胞分辨的亚波长微结构。这项研究为DSR作为单个细胞定位的超分辨率超声技术的潜力提供了概念证明,为该领域开辟了新的视野。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving single cell acoustic localisation with deactivation super resolution.

Photo-activated localization microscopy (PALM) has been a game-changer, breaking the diffraction limit in spatial resolution. This study presents the Deactivation Super Resolution (DSR) method, which utilises the deactivation of genetically encodable contrast agents, enabling us to super-resolve and pinpoint individual cells with ultrasound as they navigate through structures which cannot be resolved by conventional B-Mode imaging. DSR takes advantage of Gas Vesicles (GVs), which are air-filled sub-micron particles that have been expressed in genetically engineered bacterial and mammalian cells to produce acoustic contrast. Our experimental results show that DSR can distinguish sub-wavelength microstructures that standard B-mode ultrasound images fail to resolve by super-localising individual mammalian cells. This study provides a proof of concept for the potential of DSR to serve as a super-resolution ultrasound technique for individual cell localisation, opening new horizons in the field.

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