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远端阻力对多普勒超声血流模式的影响。

Effect of distal resistance on Doppler US flow patterns.

作者信息

Halpern E J, Merton D A, Forsberg F

机构信息

Department of Radiology, Jefferson Medical College, Thomas Jefferson University Hospital, Philadelphia, PA 19107-5244, USA.

出版信息

Radiology. 1998 Mar;206(3):761-6. doi: 10.1148/radiology.206.3.9494498.

Abstract

PURPOSE

To quantify the effect of distal resistance on arterial flow patterns.

MATERIALS AND METHODS

Spectral Doppler tracings were obtained from the suprarenal aorta, infrarenal aorta, and proximal renal arteries of 10 volunteers and from the common, internal, and external carotid arteries (CCA, ICA, and ECA, respectively) of 31 volunteers. Early systolic acceleration (ESA), peak systolic velocity (PSV), end diastolic velocity (EDV), and waveform morphology were evaluated. An in vitro flow model of a compliant vessel in a branched pattern was created to simulate the renal and carotid circulations.

RESULTS

ESA and PSV were significantly lower in the renal artery than in the suprarenal aorta (P < .01). ESA decreased significantly from the CCA to the ICA (P < .001) but only minimally from the CCA to the ECA (P > .20). EDV increased slightly from the CCA to the ICA but decreased substantially in the ECA. As distal resistance was increased in the in vitro model, ESA was more rapid, systole was shortened, EDV was decreased, and PSV was increased.

CONCLUSION

As blood flows into the low-resistance renal artery or ICA, antegrade flow is shifted into the latter portion of the cardiac cycle, resulting in apparent prolongation of systole and forward flow throughout diastole. As blood flows into the higher-resistance ECA, diastolic flow is diminished. The in vitro model reproduces these Doppler flow patterns by means of manipulation of distal resistance.

摘要

目的

量化远端阻力对动脉血流模式的影响。

材料与方法

获取了10名志愿者的肾上腺上主动脉、肾上腺下主动脉及肾动脉近端,以及31名志愿者的颈总动脉、颈内动脉和颈外动脉(分别为CCA、ICA和ECA)的频谱多普勒描记图。评估了早期收缩期加速度(ESA)、收缩期峰值速度(PSV)、舒张末期速度(EDV)及波形形态。构建了一个体外分支状顺应性血管血流模型,以模拟肾循环和颈动脉循环。

结果

肾动脉的ESA和PSV显著低于肾上腺上主动脉(P <.01)。从CCA到ICA,ESA显著降低(P <.001),但从CCA到ECA仅略有降低(P >.20)。从CCA到ICA,EDV略有增加,但在ECA中显著降低。在体外模型中增加远端阻力时,ESA加快,收缩期缩短,EDV降低,PSV增加。

结论

当血液流入低阻力的肾动脉或ICA时,正向血流转移至心动周期的后半部分,导致收缩期明显延长且整个舒张期均有正向血流。当血液流入高阻力的ECA时,舒张期血流减少。体外模型通过操纵远端阻力再现了这些多普勒血流模式。

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