Bouwens Arno, Szlag Daniel, Szkulmowski Maciej, Bolmont Tristan, Wojtkowski Maciej, Lasser Theo
Laboratoire d’Optique Biomédicale, École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Opt Express. 2013 Jul 29;21(15):17711-29. doi: 10.1364/OE.21.017711.
Optical coherence tomography (OCT) and optical coherence microscopy (OCM) allow the acquisition of quantitative three-dimensional axial flow by estimating the Doppler shift caused by moving scatterers. Measuring the velocity of red blood cells is currently the principal application of these methods. In many biological tissues, blood flow is often perpendicular to the optical axis, creating the need for a quantitative measurement of lateral flow. Previous work has shown that lateral flow can be measured from the Doppler bandwidth, albeit only for simplified optical systems. In this work, we present a generalized model to analyze the influence of relevant OCT/OCM system parameters such as light source spectrum, numerical aperture and beam geometry on the Doppler spectrum. Our analysis results in a general framework relating the mean and variance of the Doppler frequency to the axial and lateral flow velocity components. Based on this model, we present an optimized acquisition protocol and algorithm to reconstruct quantitative measurements of lateral and axial flow from the Doppler spectrum for any given OCT/OCM system. To validate this approach, Doppler spectrum analysis is employed to quantitatively measure flow in a capillary with both extended focus OCM and OCT.
光学相干断层扫描(OCT)和光学相干显微镜(OCM)通过估计移动散射体引起的多普勒频移来获取定量三维轴向血流。测量红细胞速度是这些方法目前的主要应用。在许多生物组织中,血流通常与光轴垂直,因此需要对横向血流进行定量测量。先前的工作表明,可以从多普勒带宽测量横向血流,尽管这仅适用于简化的光学系统。在这项工作中,我们提出了一个通用模型,以分析相关OCT/OCM系统参数(如光源光谱、数值孔径和光束几何形状)对多普勒光谱的影响。我们的分析得出了一个将多普勒频率的均值和方差与轴向和横向血流速度分量相关联的通用框架。基于该模型,我们提出了一种优化的采集协议和算法,用于从任何给定OCT/OCM系统的多普勒光谱中重建横向和轴向血流的定量测量。为了验证这种方法,采用多普勒光谱分析通过扩展焦深OCM和OCT对毛细血管中的血流进行定量测量。