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Validation of a novel vector method for blood peak velocity detection in an anthropomorphic phantom

机译:新型矢量方法在拟人幻影中检测血峰速度的验证

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The peak blood velocity is a parameter of high medical interest, which is used, for example, in the determination of carotid stenosis grade. The standard approach, which typically exploits the maximum frequency detectable in the Doppler spectrum, is prone to two main sources of errors: the ambiguity of the Doppler angle and the spectral broadening. A novel method, based on a mathematical model, was recently introduced and shown to be unaffected by the spectral broadening. The method directly measures the maximum velocity component in a large sample volume that includes all the vessel section. Furthermore, its combination with a vector Doppler approach allows automatically correcting for the angle. This technique produced good results when verified in straight tubes, but tests in a more realistic configuration are necessary for an accurate validation. In this work, the proposed technique is compared against 2 already validated methods by investigating the common and internal branches of an anthropomorphic phantom, which mimics a carotid bifurcation with a 50% stenosis on the internal artery.
机译:峰值血流速度是具有很高医学价值的参数,例如用于确定颈动脉狭窄程度。标准方法通常利用多普勒频谱中可检测到的最大频率,因此容易产生两个主要的误差源:多普勒角度的歧义性和频谱展宽。最近引入了一种基于数学模型的新颖方法,该方法不受光谱展宽的影响。该方法直接测量包括所有容器部分在内的大样本量中的最大速度分量。此外,将其与矢量多普勒方法结合使用可自动校正角度。当在直管中进行验证时,该技术产生了良好的结果,但是在更实际的配置中进行测试对于准确验证是必要的。在这项工作中,通过研究拟人体模的共同分支和内部分支,将拟议的技术与2种已通过验证的方法进行比较,拟人体模模拟了内动脉狭窄程度为50%的颈动脉分叉。

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