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Photoacoustic imaging with custom-designed fingertip laser diode

机译:具有定制指尖激光二极管的光声成像

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Photoacoustic (PA) imaging has attracted increasing research interest in recent years due to its unique merit of combining light and sound. Enabling deep tissue imaging with high ultrasound spatial resolution and optical absorption contrast, PA imaging has been applied in various application scenarios including anatomical, functional and molecular imaging. However, the bulky and expensive laser source is one of the key bottlenecks that needs to address for further compact system development. Photoacoustic imaging system based on low-cost laser diode is one of the promising solutions. In this paper, we report a custom-made fingertip laser diode system enabling both pulsed and continuous modulation modes with the shortest pulse width of 30 ns, driving current of 10 A, and single modulation frequency of 3 MHz, which is suitable for both time and narrow-band frequency domain PA imaging. The experiments for generating PA signals were performed with more than 70 millivolts signals amplitude. By sweeping the pulse width, it is observed that the amplitude of PA signals is increasing due to higher laser energy. To the best of our knowledge, this may be the most compact laser source used for photoacoustic applications for PA imaging. Owing to its super-compact size, the reported laser diode system could pave the pathway to low-cost photoacoustic sensing and imaging device, even wearable photoacoustic biomedical sensors.
机译:近年来,光声(PA)成像引起了近年来的越来越多的研究兴趣,因为它的光和声音的独特优点。通过高超声空间分辨率和光学吸收对比度实现深层组织成像,PA成像已应用于各种应用场景,包括解剖学,功能和分子成像。然而,笨重和昂贵的激光源是需要解决进一步紧凑的系统开发的关键瓶颈之一。基于低成本激光二极管的光声成像系统是有希望的解决方案之一。在本文中,我们报告了一种定制的指尖激光二极管系统,使脉冲和连续调制模式都具有30 ns的最短脉冲宽度,10a的驱动电流和3 MHz的单个调制频率,这适用于两次窄带频域PA成像。以超过70毫伏的信号幅度进行生成PA信号的实验。通过扫描脉冲宽度,观察到由于激光能量较高,PA信号的幅度增加。据我们所知,这可能是用于PA成像的光声应用最紧凑的激光源。由于其超紧凑的尺寸,报告的激光二极管系统可以将路径铺设到低成本的光声传感和成像装置,甚至可穿戴光声生物医学传感器。

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