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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >In vivo validation of a blood vector velocity estimator with MR angiography
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In vivo validation of a blood vector velocity estimator with MR angiography

机译:MR血管造影术对血矢量速度估算器的体内验证

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Conventional Doppler methods for blood velocity estimation only estimate the velocity component along the ultrasound beam direction. This implies that a Doppler angle under examination close to 90° results in unreliable information about the true blood direction and blood velocity. The novel method transverse oscillation (TO), which combines estimates of the axial and the transverse velocity components in the scan plane, makes it possible to estimate the vector velocity of the blood regardless of the Doppler angle. The present study evaluates the TO method with magnetic resonance phase contrast angiography (MRA) by comparing in vivo measurements of stroke volume. Eleven healthy volunteers were included in this prospective study. From the obtained data sets recorded with the 2 modalities, vector velocity sequences were constructed and stroke volume calculated. Angle of insonation was approximately 90° for TO measurements. The correlation between the stroke volume estimated by TO and MRA was 0.91 (p < 0.01) with the equation for the line of regression: MRA = 1.1¿TO-0.4. A Bland-Altman plot was additionally constructed where the mean difference was 0.2 ml with limits of agreement at ¿1.4 ml and 1.9 ml. The results indicate that reliable vector velocity estimates can be obtained in vivo using the presented angle-independent 2-D vector velocity method. The TO method can be a useful alternative to conventional Doppler systems by avoiding the angle artifact, thus giving quantitative velocity information.
机译:用于血液速度估计的常规多普勒方法仅估计沿超声束方向的速度分量。这意味着在检查中接近90°的多普勒角度会导致有关真实血液方向和血流速度的信息不可靠。结合了扫描平面中轴向和横向速度分量的估计的新颖方法横向振荡(TO)使得可以估计血液的矢量速度而与多普勒角度无关。本研究通过比较体内卒中量的测量结果,评价了磁共振相衬血管造影术(MRA)的TO方法。这项前瞻性研究包括11名健康志愿者。根据以两种方式记录的获得的数据集,构建矢量速度序列并计算笔划量。对于TO测量,共鸣角大约为90°。由TO和MRA估计的中风量之间的相关性为0.91(p <0.01)与回归线方程:MRA = 1.1×TO-0.4。 Bland-Altman图还被构造了平均差为0.2 ml,一致极限为?1.4 ml和1.9 ml。结果表明,使用提出的角度无关的二维矢量速度方法可以在体内获得可靠的矢量速度估计。通过避免角度伪像,TO方法可以成为常规多普勒系统的有用替代方法,从而提供定量的速度信息。

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