IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Aug;64(8):1223-1233. doi: 10.1109/TUFFC.2017.2718030. Epub 2017 Jun 21.
Photoacoustic (PA) imaging is a promising imaging modality to visualize specific living tissues based on the light absorption coefficients without dyeing. In this paper, a real-time PA imaging system with a tunable laser was newly developed with an originally designed spherically curved array transducer. Five different series of experiments were conducted to validate the PA measurement system. The peak frequency of the transducer response was 17.7 MHz, and a volume-imaging rate of 3-D volume imaging was 10-20 volumes per second. The spatial resolution of imaging was 90- [Formula: see text] along both the axial and lateral directions. The developed imaging system could measure a difference on an absorption coefficient of gold nanorods. Additionally, the PA imaging could visualize the in vivo microvasculatures of a human hand. This PA imaging system with higher spatial-temporal resolution and the tunable laser further should enhance our understanding of not only basic properties of the photo acoustics but also clinical applications.
光声(PA)成像是一种很有前途的成像方式,可以在不染色的情况下基于光吸收系数来可视化特定的活体组织。在本文中,我们新开发了一种具有可调谐激光的实时 PA 成像系统,该系统采用了原创设计的球形弯曲阵列换能器。进行了五组不同的实验来验证 PA 测量系统。换能器响应的峰值频率为 17.7 MHz,3-D 体积成像的体积成像速率为每秒 10-20 个体积。成像的空间分辨率在轴向和侧向均为 90-[公式:见正文]。所开发的成像系统可以测量金纳米棒的吸收系数差异。此外,PA 成像还可以可视化人手的活体微血管。具有更高时空分辨率和可调谐激光的 PA 成像系统应进一步增强我们对光声的基础特性以及临床应用的理解。