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Doppler optical coherence tomography in cardiovascular physiology

机译:多普勒光学相干断层扫描在心血管生理学中的作用

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The study of flow dynamics in complex geometry vessels is highly important in many biomedical applications where the knowledge of the mechanic interactions between the moving fluid and the housing media plays a key role for the determination of the parameters of interest, including the effect of blood flow on the possible rupture of atherosclerotic plaques. Doppler Optical Coherence Tomography (DOCT), as a functional extension of Optical Coherence Tomography (OCT), is an optic, non-contact, non-invasive technique able to achieve detailed analysis of the flow/vessel interactions. It allows simultaneous high resolution imaging (10 μm typical) of the morphology and composition of the vessel and determination of the flow velocity distribution along the measured cross-section.rnWe applied DOCT system to image high-resolution one-dimensional and multi-dimensional velocity distribution profiles of Newtonian and non-Newtonian fluids flowing in vessels with complex geometry, including Y-shaped and T-shaped vessels, vessels with aneurism, bifurcated vessels with deployed stent and scaffolds. The phantoms were built to mimic typical shapes of human blood vessels, enabling preliminary analysis of the interaction between flow dynamics and the (complex) geometry of the vessels and also to map the related velocity profiles at several inlet volume flow rates. Feasibility studies for quantitative observation of the turbulence of flows arising within the complex geometry vessels are discussed. In addition, DOCT technique was also applied for monitoring cerebral mouse blood flow in vivo. Two-dimensional DOCT images of complex flow velocity profiles in blood vessel phantoms and in vivo sub-cranial mouse blood flow velocities distributions are presented.
机译:在许多生物医学应用中,对复杂几何形状的容器中的流动动力学的研究非常重要,在这些应用中,运动流体与外壳介质之间的机械相互作用的知识对于确定感兴趣的参数(包括血流的影响)起着关键作用可能会导致动脉粥样硬化斑块破裂。多普勒光学相干断层扫描(DOCT)作为光学相干断层扫描(OCT)的功能扩展,是一种光学,非接触,无创技术,能够对流量/血管相互作用进行详细分析。它可以同时对血管的形态和成分进行高分辨率成像(典型值为10μm),并确定沿测得的横截面的流速分布.rn我们将DOCT系统应用于高分辨率一维和多维速度成像在具有复杂几何形状的血管中流动的牛顿流体和非牛顿流体的分布曲线,包括Y形和T形血管,动脉瘤血管,带有已展开支架和支架的分叉血管。幻影的构建是为了模仿人类血管的典型形状,从而能够对流动动力学和血管(复杂)几何形状之间的相互作用进行初步分析,并绘制出一些入口体积流速下的相关速度曲线。讨论了定量观察复杂几何形状容器内流动湍流的可行性研究。另外,DOCT技术还被用于体内监测脑小鼠血流。呈现了血管体模中复杂流速分布的二维DOCT图像以及体内颅下小鼠血流速度分布。

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