Wang Depeng, Wang Yuehang, Wang Weiran, Luo Dandan, Chitgupi Upendra, Geng Jumin, Zhou Yang, Wang Lidai, Lovell Jonathan F, Xia Jun
Department of Biomedical Engineering, University at Buffalo, State University of New York, Buffalo, USA.
Department of Electronic Engineering, City University of Hong Kong, Hong Kong, China.
Biomed Opt Express. 2016 Dec 8;8(1):112-123. doi: 10.1364/BOE.8.000112. eCollection 2017 Jan 1.
Photoacoustic computed tomography (PACT) holds great promise for biomedical imaging, but wide-spread implementation is impeded by the bulkiness of flash-lamp-pumped laser systems, which typically weigh between 50 - 200 kg, require continuous water cooling, and operate at a low repetition rate. Here, we demonstrate that compact lasers based on emerging diode technologies are well-suited for preclinical and clinical PACT. The diode-pumped laser used in this study had a miniature footprint (13 × 14 × 7 cm), weighed only 1.6 kg, and outputted up to 80 mJ per pulse at 1064 nm. , the laser system readily provided over 4 cm PACT depth in chicken breast tissue. , in addition to high resolution, non-invasive brain imaging in living mice, the system can operate at 50 Hz, which enabled high-speed cross-sectional imaging of murine cardiac and respiratory function. The system also provided high quality, high-frame rate, and non-invasive three-dimensional mapping of arm, palm, and breast vasculature at multi centimeter depths in living human subjects, demonstrating the clinical viability of compact lasers for PACT.
光声计算机断层扫描(PACT)在生物医学成像方面极具前景,但闪光灯泵浦激光系统体积庞大阻碍了其广泛应用,这种系统通常重达50至200千克,需要持续水冷,且重复频率较低。在此,我们证明基于新兴二极管技术的紧凑型激光器非常适合临床前和临床PACT。本研究中使用的二极管泵浦激光器占地面积小(13×14×7厘米),仅重1.6千克,在1064纳米处每个脉冲输出高达80毫焦。该激光系统在鸡胸组织中轻松实现了超过4厘米的PACT深度。此外,除了对活体小鼠进行高分辨率、非侵入性脑成像外,该系统可在50赫兹下运行,从而实现对小鼠心脏和呼吸功能的高速横截面成像。该系统还在活体人类受试者的多厘米深度处提供了手臂、手掌和乳房血管系统的高质量、高帧率和非侵入性三维映射,证明了紧凑型激光器用于PACT的临床可行性。