Ultrahigh-Sensitivity 3D-Printed Hollow Fabry-Pérot Fiber Ultrasound Sensor for Photoacoustic Imaging

法布里-珀罗干涉仪 材料科学 生物医学中的光声成像 灵敏度(控制系统) 超声波 光电子学 3d打印 光纤 光纤传感器 光学 纤维 生物医学工程 复合材料 放射科 医学 电子工程 波长 物理 工程类
作者
Anqi Wang,Xuhao Fan,Geng Chen,Yueqi Liu,Zongjin Li,Zexu Zhang,Xinger Wang,Fujun Zhang,Zhi Zhang,Haiyang Qiu,Hui Gao,Wei Xiong,Hao Li,Qizhen Sun
出处
期刊:ACS Photonics [American Chemical Society]
卷期号:12 (8): 4553-4562 被引量:5
标识
DOI:10.1021/acsphotonics.5c00944
摘要

Photoacoustic imaging is an advanced imaging technique that requires highly sensitive ultrasonic detectors to capture weak high-frequency signals. Optical ultrasound sensors, particularly Fabry–Pérot (FP) interferometers, offer a promising alternative with improved sensitivity, compact size, and electromagnetic immunity. However, traditional deposition-based FP fiber sensors, which rely on solid spacers, are mechanically constrained, limiting further sensitivity improvements. Existing printed structures are unable to achieve the high-frequency response required for photoacoustic imaging. In this work, we present an ultrahigh-sensitivity hollow FP fiber sensor fabricated by two-photon polymerization 3D printing and vapor deposition. The unique hollow design reduces the backing resistance limitations of the response film typically seen in solid FP sensors, resulting in improved displacement sensitivity with a high frequency response. The sensor achieves a total sensitivity of 797 mV/kPa, which is 22× higher than that of the conventional solid FP sensor, with a low noise-equivalent pressure of 2.8 Pa. It operates at a central response frequency of 1.5 MHz with a bandwidth of 1.2 MHz and features a wide response angle of 180°, which minimizes blind spots. Additionally, we developed a photoacoustic imaging system based on this sensor, achieving a resolution of 117 μm. This hollow FP fiber sensor offers a robust solution for high-precision ultrasound detection and imaging, enabling advanced photoacoustic imaging applications in the future.
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