Maslov Konstantin, Stoica Gheorghe, Wang Lihong V
Optical Imaging Laboratory, Department of Biomedical Engineering, Texas A&M University, College Station, Texas 77843-3120, USA.
Opt Lett. 2005 Mar 15;30(6):625-7. doi: 10.1364/ol.30.000625.
Reflection-mode photoacoustic microscopy with dark-field laser pulse illumination and high-numerical-aperture ultrasonic detection is designed and implemented in noninvasively imaged blood vessels in the skin in vivo. Dark-field optical illumination minimizes the interference caused by strong photoacoustic signals from superficial structures. A high-numerical-aperture acoustic lens provides high lateral resolution, 45-120 microm in this system. A broadband ultrasonic detection system provides high axial resolution, estimated to be approximately 15 microm. The optical illumination and ultrasonic detection are in a coaxial confocal configuration for optimal image quality. The system is capable of imaging optical-absorption contrast as deep as 3 mm in biological tissue.
设计并实现了一种具有暗场激光脉冲照明和高数值孔径超声检测的反射模式光声显微镜,用于对体内皮肤中的血管进行无创成像。暗场光学照明可将来自浅表结构的强光声信号所引起的干扰降至最低。高数值孔径声学透镜提供了高横向分辨率,在该系统中为45 - 120微米。宽带超声检测系统提供了高轴向分辨率,估计约为15微米。光学照明和超声检测采用同轴共焦配置以实现最佳图像质量。该系统能够对生物组织中深达3毫米的光吸收对比度进行成像。