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High frame rate vector flow imaging of stenotic carotid bifurcation: Computational modeling and analysis

机译:狭窄颈动脉分叉的高帧率矢量流成像:计算建模与分析

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Analysis of the complex blood flow pattern in the carotid bifurcation is clinically important to the diagnosis of carotid stenoses. We hypothesize that the use of high frame rate imaging methods such as plane wave excitation, together with vector flow estimators like block matching, may potentially be a suitable imaging problem to this problem. This paper presents our team's initial efforts in developing a high frame rate vector flow imaging framework that is based on plane wave excitation principles and a high dynamic range block matching algorithm that incorporates least squares fitting principles. We have conducted a series of Field II simulations on straight tubes and carotid bifurcation to evaluate the estimation accuracy and imaging performance of our framework. Results indicate that high-frame-rate vector flow imaging is capable of visualizing complex blood flow. It has potential to be further developed into a new clinical technique for vascular diagnoses.
机译:对颈动脉分叉处复杂的血流模式进行分析对颈动脉狭窄的诊断具有重要的临床意义。我们假设使用高帧频成像方法(例如平面波激发)以及矢量流量估计器(例如块匹配)可能是该问题的合适成像问题。本文介绍了我们团队在开发基于平面波激励原理的高帧频矢量流成像框架以及结合最小二乘拟合原理的高动态范围块匹配算法方面的初步工作。我们对直管和颈动脉分叉进行了一系列Field II模拟,以评估我们框架的估计准确性和成像性能。结果表明,高帧速矢量流成像能够可视化复杂的血流。它有可能被进一步发展为用于血管诊断的新临床技术。

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