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在从股动脉向近端主动脉逆行传播过程中人体反射波的衰减。

Attenuation of reflected waves in man during retrograde propagation from femoral artery to proximal aorta.

作者信息

Baksi A John, Davies Justin E, Hadjiloizou Nearchos, Baruah Resham, Unsworth Beth, Foale Rodney A, Korolkova Olga, Siggers Jennifer H, Francis Darrel P, Mayet Jamil, Parker Kim H, Hughes Alun D

机构信息

International Centre for Circulatory Health, National Heart and Lung Institute, Imperial College London, & Imperial College Healthcare NHS Trust, UK; Cardiovascular Biomedical Research Unit, Royal Brompton Hospital and Imperial College London, London, UK.

International Centre for Circulatory Health, National Heart and Lung Institute, Imperial College London, & Imperial College Healthcare NHS Trust, UK.

出版信息

Int J Cardiol. 2016 Jan 1;202:441-5. doi: 10.1016/j.ijcard.2015.09.064. Epub 2015 Sep 28.

Abstract

BACKGROUND

Wave reflection may be an important influence on blood pressure, but the extent to which reflections undergo attenuation during retrograde propagation has not been studied. We quantified retrograde transmission of a reflected wave created by occlusion of the left femoral artery in man.

METHODS

20 subjects (age 31-83 years; 14 male) underwent invasive measurement of pressure and flow velocity with a sensor-tipped intra-arterial wire at multiple locations distal to the proximal aorta before, during and following occlusion of the left femoral artery by thigh cuff inflation. A numerical model of the circulation was also used to predict reflected wave transmission. Wave reflection was measured as the ratio of backward to forward wave energy (WRI) and the ratio of peak backward to forward pressure (Pb/Pf).

RESULTS

Cuff inflation caused a marked reflection which was largest at 5-10 cm from the cuff (change (Δ) in WRI=0.50 (95% CI 0.38, 0.62); p<0.001, ΔPb/Pf=0.23 (0.18-0.29); p<0.001). The magnitude of the cuff-induced reflection decreased progressively at more proximal locations and was barely discernible at sites>40 cm from the cuff including in the proximal aorta. Numerical modelling gave similar predictions to those observed experimentally.

CONCLUSIONS

Reflections due to femoral artery occlusion are markedly attenuated by the time they reach the proximal aorta. This is due to impedance mismatches of bifurcations traversed in the backward direction. This degree of attenuation is inconsistent with the idea of a large discrete reflected wave arising from the lower limb and propagating back into the aorta.

摘要

背景

波反射可能对血压有重要影响,但反射波在逆行传播过程中衰减的程度尚未得到研究。我们对人体左股动脉闭塞所产生的反射波的逆行传播进行了量化。

方法

20名受试者(年龄31 - 83岁;14名男性)在左股动脉被大腿袖带充气闭塞前、闭塞期间和闭塞后,使用带传感器的动脉内导管在近端主动脉远端的多个位置进行压力和流速的有创测量。还使用了循环数值模型来预测反射波的传播。波反射通过后向波与前向波能量之比(WRI)以及后向波与前向波峰值压力之比(Pb/Pf)来测量。

结果

袖带充气引起明显的反射,在距袖带5 - 10厘米处最大(WRI变化(Δ)=0.50(95%CI 0.38, 0.62);p<0.001,ΔPb/Pf = 0.23(0.18 - 0.29);p<0.001)。袖带引起的反射幅度在更近端的位置逐渐减小,在距袖带>40厘米的部位(包括近端主动脉)几乎难以察觉。数值模拟给出了与实验观察相似的预测结果。

结论

股动脉闭塞引起的反射波在到达近端主动脉时明显衰减。这是由于在逆行方向上穿过的分叉处的阻抗不匹配。这种衰减程度与来自下肢并传播回主动脉的大的离散反射波概念不一致。

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