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一种用于体内超声和光声成像的超灵敏、宽带透明超声换能器。

An ultrasensitive and broadband transparent ultrasound transducer for ultrasound and photoacoustic imaging in-vivo.

机构信息

Department of Electrical Engineering, Pohang University of Science and Technology, Pohang, Republic of Korea.

Medical Device Innovation Center, Pohang University of Science and Technology, Pohang, Republic of Korea.

出版信息

Nat Commun. 2024 Feb 16;15(1):1444. doi: 10.1038/s41467-024-45273-4.

Abstract

Transparent ultrasound transducers (TUTs) can seamlessly integrate optical and ultrasound components, but acoustic impedance mismatch prohibits existing TUTs from being practical substitutes for conventional opaque ultrasound transducers. Here, we propose a transparent adhesive based on a silicon dioxide-epoxy composite to fabricate matching and backing layers with acoustic impedances of 7.5 and 4-6 MRayl, respectively. By employing these layers, we develop an ultrasensitive, broadband TUT with 63% bandwidth at a single resonance frequency and high optical transparency ( > 80%), comparable to conventional opaque ultrasound transducers. Our TUT maximises both acoustic power and transfer efficiency with maximal spectrum flatness while minimising ringdowns. This enables high contrast and high-definition dual-modal ultrasound and photoacoustic imaging in live animals and humans. Both modalities reach an imaging depth of > 15 mm, with depth-to-resolution ratios exceeding 500 and 370, respectively. This development sets a new standard for TUTs, advancing the possibilities of sensor fusion.

摘要

透明超声换能器(TUT)可以无缝集成光学和超声组件,但声阻抗失配使得现有的 TUT 无法实际替代传统的不透明超声换能器。在这里,我们提出了一种基于二氧化硅-环氧复合材料的透明粘合剂,用于制造具有 7.5 和 4-6 MRayl 声阻抗的匹配层和背衬层。通过使用这些层,我们开发了一种超灵敏、宽带的 TUT,在单个共振频率下具有 63%的带宽和高透光率(>80%),可与传统的不透明超声换能器相媲美。我们的 TUT 在最大限度地提高声功率和传输效率的同时,使频谱平坦度最大化,同时最小化振铃。这使得在活体动物和人体中能够进行高对比度和高清晰度的双模态超声和光声成像。两种模式都能达到 >15mm 的成像深度,深度分辨率比分别超过 500 和 370。这项发展为 TUT 设定了新的标准,推进了传感器融合的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3221/10873420/b514c0a15a82/41467_2024_45273_Fig1_HTML.jpg

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