超声波传感器
帧速率
传感器
激光器
光学
视野
快照(计算机存储)
材料科学
计算机科学
声学
物理
操作系统
作者
Yang Li,Lei Li,Liren Zhu,Konstantin Maslov,Junhui Shi,Peng Hu,En Bo,Junjie Yao,Jinyang Liang,Lidai Wang,Lihong V. Wang
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2020-01-20
卷期号:14 (3): 164-170
被引量:95
标识
DOI:10.1038/s41566-019-0576-2
摘要
Current embodiments of photoacoustic imaging require either serial detection with a single-element ultrasonic transducer or parallel detection with an ultrasonic array, necessitating a trade-off between cost and throughput. Here, we present photoacoustic topography through an ergodic relay (PATER) for low-cost high-throughput snapshot wide-field imaging. Encoding spatial information with randomized temporal signatures through ergodicity, PATER requires only a single-element ultrasonic transducer to capture a wide-field image with a single laser shot. We applied PATER to demonstrate both functional imaging of haemodynamic responses and high-speed imaging of blood pulse wave propagation in mice in vivo. Leveraging the high frame rate of 2 kHz, PATER tracked and localized moving melanoma tumour cells in the mouse brain in vivo, which enabled flow velocity quantification and super-resolution imaging. Among the potential biomedical applications of PATER, wearable devices to monitor human vital signs in particular is envisaged. A low-cost high-throughput photoacoustic imaging based on an ergodic relay coupled with a single-element ultrasonic transducer that can capture a wide-field image with only a single laser shot is demonstrated.
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