超声微血流同步任意门频谱多普勒的开发及验证初探

      Development of Synchronous Arbitrary Gate-PW Doppler for Simultaneous Quantitation of Ultrasound Microvascular Imaging and Preliminary Validation

      • 摘要: 超微血流成像可以有效提高血流成像的灵敏度和空间分辨力。为了进一步满足临床对微血流进行精准定量分析的需求,该文详述了在超微血流成像基础上实现的微血流定量分析功能的技术特点和性能验证工作。通过多普勒体模和弦线体模对同步任意门频谱多普勒(SAG-PW)的测值进行了初步验证。多普勒体模结果显示,SAG-PW测值与传统PW接近,不同条件下多组测值的平均误差为3.9%。SAG-PW与PW测值线性拟合结果表现出强线性相关,斜率和相关系数均趋近于1。弦线体模实验测量了TAMEAN、SAG-PW测值与设定值之间的相对测量误差均在10%以内。

         

        Abstract: Microvascular imaging can effectively improve the sensitivity and spatial resolution of blood flow imaging. To further meet the clinical requirements of quantitative measurements for microvascular, this article demonstrated technical features and performance verification results of microflow quantitative analysis function, which was developed based on Ultra Micro Angiography function. This article provided preliminary validation on the measurement of Synchronous Arbitrary Gate-PW (SAG-PW) using a Doppler flow phantom and a moving string phantom. The Doppler flow phantom results demonstrated that the SAG-PW measurement values were close to the traditional PW results, and the average error of multiple sets of measurement results under different conditions was 3.9%. The results of SAG-PW and PW were strongly linear correlated, with the slope and correlation coefficient approaching 1. The TAMEAN was measured using the moving string phantom and the relative errors of SAG-PW and different phantom set values were within 10%.

         

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