Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, 48109, USA.
Department of Electronic Science and Engineering, Nanjing University, Nanjing, Jiangsu, 21000, China.
Sci Rep. 2018 Jun 29;8(1):9885. doi: 10.1038/s41598-018-28131-4.
Using low cost and small size light emitting diodes (LED) as the alternative illumination source for photoacoustic (PA) imaging has many advantages, and can largely benefit the clinical translation of the emerging PA imaging technology. Here, we present our development of LED-based PA imaging integrated with B-mode ultrasound. To overcome the challenge of achieving sufficient signal-to-noise ratio by the LED light that is orders of magnitude weaker than lasers, extensive signal averaging over hundreds of pulses is performed. Facilitated by the fast response of the LED and the high-speed driving as well as the high pulse repetition rate up to 16 kHz, B-mode PA images superimposed on gray-scale ultrasound of a biological sample can be achieved in real-time with frame rate up to 500 Hz. The LED-based PA imaging could be a promising tool for several clinical applications, such as assessment of peripheral microvascular function and dynamic changes, diagnosis of inflammatory arthritis, and detection of head and neck cancer.
使用低成本、小尺寸的发光二极管(LED)作为光声(PA)成像的替代照明光源具有许多优势,可以极大地促进新兴 PA 成像技术的临床转化。在这里,我们展示了我们开发的基于 LED 的 PA 成像与 B 模式超声的集成。为了克服 LED 光的信噪比不足的挑战,我们进行了数百个脉冲的广泛信号平均。由于 LED 的快速响应以及高速驱动和高达 16 kHz 的高脉冲重复率,生物样本的灰阶超声上可以实时叠加 B 模式 PA 图像,帧率高达 500 Hz。基于 LED 的 PA 成像可能是几种临床应用的有前途的工具,例如评估周围微血管功能和动态变化、诊断炎症性关节炎以及检测头颈部癌症。