Kim Chulhong, Zemp Roger J, Wang Lihong V
Optical Imaging Laboratory, Department of Biomedical Engineering, 3120 TAMU, Texas A&M University, College Station, TX 77843-3120, USA.
Opt Lett. 2006 Aug 15;31(16):2423-5. doi: 10.1364/ol.31.002423.
Biophotonic imaging with ultrasound-modulated optical tomography (UOT) promises ultrasonically resolved imaging in biological tissues. A key challenge in this imaging technique is a low signal-to-noise ratio (SNR). We show significant UOT signal enhancement by using intense time-gated acoustic bursts. A CCD camera captured the speckle pattern from a laser-illuminated tissue phantom. Differences in speckle contrast were observed when ultrasonic bursts were applied, compared with when no ultrasound was applied. When CCD triggering was synchronized with burst initiation, acoustic-radiation-force-induced displacements were detected. To avoid mechanical contrast in UOT images, the CCD camera acquisition was delayed several milliseconds until transient effects of acoustic radiation force attenuated to a satisfactory level. The SNR of our system was sufficiently high to provide an image pixel per acoustic burst without signal averaging. Because of the substantially improved SNR, the use of intense acoustic bursts is a promising signal enhancement strategy for UOT.
采用超声调制光学断层扫描(UOT)的生物光子成像有望实现生物组织中的超声分辨成像。这种成像技术的一个关键挑战是低信噪比(SNR)。我们通过使用强时间门控声脉冲展示了显著的UOT信号增强。一台电荷耦合器件(CCD)相机捕捉来自激光照射组织模型的散斑图案。与未施加超声时相比,施加超声脉冲时观察到散斑对比度的差异。当CCD触发与脉冲起始同步时,检测到声辐射力诱导的位移。为避免UOT图像中的机械对比度,CCD相机采集延迟了几毫秒,直到声辐射力的瞬态效应衰减到令人满意的水平。我们系统的信噪比足够高,无需信号平均就能为每个声脉冲提供一个图像像素。由于信噪比得到了显著改善,使用强声脉冲是一种很有前景的UOT信号增强策略。