Li Sinan, Cheng Yi, Eckersley Robert J, Elson Daniel S, Tang Meng-Xing
Department of Bioengineering, Imperial College London, London, SW7 2AZ, UK.
Department of Biomedical Engineering, King's College London, London, SE1 7EH, UK.
Biomed Opt Express. 2015 May 5;6(6):1954-62. doi: 10.1364/BOE.6.001954. eCollection 2015 Jun 1.
Shear wave speed is quantitatively related to tissue viscoelasticity. Previously we reported shear wave tracking at centimetre depths in a turbid optical medium using laser speckle contrast detection. Shear wave progression modulates displacement of optical scatterers and therefore modulates photon phase and changes the laser speckle patterns. Time-resolved charge-coupled device (CCD)-based speckle contrast analysis was used to track shear waves and measure the time-of-flight of shear waves for speed measurement. In this manuscript, we report a new observation of the laser speckle contrast difference signal for dual shear waves. A modulation of CCD speckle contrast difference was observed and simulation reproduces the modulation pattern, suggesting its origin. Both experimental and simulation results show that the dual shear wave approach generates an improved definition of temporal features in the time-of-flight optical signal and an improved signal to noise ratio with a standard deviation less than 50% that of individual shear waves. Results also show that dual shear waves can correct the bias of shear wave speed measurement caused by shear wave reflections from elastic boundaries.
剪切波速度与组织粘弹性存在定量关系。此前我们报道了利用激光散斑对比度检测在浑浊光学介质中对厘米深度处的剪切波进行跟踪。剪切波的传播会调制光学散射体的位移,进而调制光子相位并改变激光散斑图案。基于时间分辨电荷耦合器件(CCD)的散斑对比度分析被用于跟踪剪切波并测量剪切波的飞行时间以进行速度测量。在本论文中,我们报告了对双剪切波激光散斑对比度差异信号的一项新观察。观察到了CCD散斑对比度差异的调制,并且模拟重现了该调制模式,揭示了其来源。实验和模拟结果均表明,双剪切波方法在飞行时间光信号中产生了对时间特征的更清晰定义,并且信噪比得到了改善,其标准偏差小于单个剪切波的50%。结果还表明,双剪切波可以校正由弹性边界处的剪切波反射引起的剪切波速度测量偏差。