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Study of flow dynamics in complex vessels using Doppler optical coherence tomography

机译:多普勒光学相干层析成像技术研究复杂血管的流动动力学

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Doppler optical coherence tomography (DOCT) was applied to non-invasive monitoring of multi-dimensional velocity profiles within complex geometry vessels. The effect of channel geometry on the flow dynamics at different inlet flow rates was studied. We investigated the flow dynamic regime arising at the junction of T- and Y-shaped samples and vessels with aneurism. We show that at constant input volume flow rate, the distribution of flow velocities measured along a cross-sectional plane orthogonal to the inlet arm, located at 20 mm off the junction, exhibited stationary and laminar behaviour. A non-homogeneous distribution of flow velocity along a junction cross-section plane is presented. Finally, we demonstrate the feasibility of DOCT for mapping the velocity profiles along the vessels' junction with a spatial resolution of about 10 x 10 x 10 mu m(3) and a minimum detectable velocity of about 2 mm s(-1).
机译:多普勒光学相干断层扫描(DOCT)被应用于复杂几何血管内多维速度分布的无创监测。研究了通道几何形状对不同入口流速下流动动力学的影响。我们调查了在T型和Y型样品和血管与动脉瘤交界处产生的流动动力学状态。我们显示出,在恒定的输入体积流量下,沿垂直于进口臂的横截面(位于离结点20 mm处)测量的流速分布表现出平稳和层流行为。给出了沿连接截面平面的流速的非均匀分布。最后,我们证明了DOCT用于绘制沿血管交界处的速度分布图的可行性,其空间分辨率约为10 x 10 x 10μm(3),最小可检测速度约为2 mm s(-1)。

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