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动脉僵硬度的无创测量:重复性以及与内皮功能和动脉形态学测量的相互关系

Noninvasive measurements of arterial stiffness: repeatability and interrelationships with endothelial function and arterial morphology measures.

作者信息

Huck Corey J, Bronas Ulf G, Williamson Eric B, Draheim Christopher C, Duprez Daniel A, Dengel Donald R

机构信息

School of Kinesiology, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Vasc Health Risk Manag. 2007;3(3):343-9.

Abstract

BACKGROUND

Many noninvasive arterial assessment techniques have been developed, measuring different parameters of arterial stiffness and endothelial function. However, there is little data available comparing different devices within the same subject. Therefore, the purpose of this study was to examine the repeatability and interrelationships between 3 different techniques to measure arterial stiffness and to compare this with forearm-mediated dilation.

METHODS

Carotid-radial pulse wave velocity was measured by the Sphygmocor (SPWV) and Complior (CPWV) devices, cardio-ankle vascular index (CAVI) was measured by the VaSera device, vascular structure and function was assessed using ultrasonography and evaluated for reliability and compared in 20 apparently healthy, college-aged men and women.

RESULTS

The intraclass correlation coefficient and standard error of the mean for the Sphygmocor (R = 0.56, SEM = 0.69), Complior (R = 0.62, SEM = 0.69), and VaSera (R = 0.60, SEM = 0.56), indicated moderate repeatability. Bland-Altman plots indicated a mean difference of 0.11 +/- 0.84 for SPWV, 0.13 +/- 1.15 for CPWV, and -0.43 +/- 0.90 for CAVI. No significant interrelationships were found among the ultrasound measures and SPWV, CPWV, and CAVI.

CONCLUSIONS

The three noninvasive modalities to study arterial stiffness reliably measures arterial stiffness however, they do not correlate with ultrasound measures of vascular function and structure in young and apparently healthy subjects.

摘要

背景

已经开发出许多非侵入性动脉评估技术,用于测量动脉僵硬度和内皮功能的不同参数。然而,同一受试者使用不同设备的数据比较很少。因此,本研究的目的是检验三种测量动脉僵硬度的不同技术之间的可重复性和相互关系,并将其与前臂介导的血管扩张进行比较。

方法

使用Sphygmocor(SPWV)和Complior(CPWV)设备测量颈-桡脉搏波速度,使用VaSera设备测量心-踝血管指数(CAVI),采用超声评估血管结构和功能,并对其可靠性进行评估。在20名明显健康的大学生年龄的男性和女性中进行比较。

结果

Sphygmocor(R = 0.56,SEM = 0.69)、Complior(R = 0.62,SEM = 0.69)和VaSera(R = 0.60,SEM = 0.56)的组内相关系数和平均标准误差表明具有中等可重复性。Bland-Altman图显示,SPWV的平均差异为0.11±0.84,CPWV为0.13±1.15,CAVI为-0.43±0.90。在超声测量与SPWV、CPWV和CAVI之间未发现显著的相互关系。

结论

三种研究动脉僵硬度的非侵入性方法能够可靠地测量动脉僵硬度,然而,在年轻且明显健康的受试者中,它们与血管功能和结构的超声测量结果不相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b93e/2293959/717575a1def3/vhrm0303-343-01.jpg

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本文引用的文献

1
Expert consensus document on arterial stiffness: methodological issues and clinical applications.
Eur Heart J. 2006 Nov;27(21):2588-605. doi: 10.1093/eurheartj/ehl254. Epub 2006 Sep 25.
2
Prognostic value of aortic pulse wave velocity as index of arterial stiffness in the general population.
Circulation. 2006 Feb 7;113(5):664-70. doi: 10.1161/CIRCULATIONAHA.105.579342.
4
Arterial elasticity as part of a comprehensive assessment of cardiovascular risk and drug treatment.
Hypertension. 2005 Jul;46(1):217-20. doi: 10.1161/01.HYP.0000165686.50890.c3. Epub 2005 May 2.
6
Brachio-ankle pulse wave velocity and cardio-ankle vascular index (CAVI).
Biomed Pharmacother. 2004 Oct;58 Suppl 1:S95-8. doi: 10.1016/s0753-3322(04)80015-5.
7
Stiffness of capacitive and conduit arteries: prognostic significance for end-stage renal disease patients.
Hypertension. 2005 Apr;45(4):592-6. doi: 10.1161/01.HYP.0000159190.71253.c3. Epub 2005 Mar 7.
8
Evaluation of carotid-femoral pulse wave velocity: influence of timing algorithm and heart rate.
Hypertension. 2005 Feb;45(2):222-6. doi: 10.1161/01.HYP.0000154229.97341.d2. Epub 2005 Jan 10.
9
Variation in non-invasive measurements of vascular function in healthy volunteers during daytime.
Clin Sci (Lond). 2005 May;108(5):425-31. doi: 10.1042/CS20040300.
10
Comparison of B-mode and echo tracking methods of assessing flow-mediated dilation.
Ultrasound Med Biol. 2004 Nov;30(11):1447-9. doi: 10.1016/j.ultrasmedbio.2004.08.019.

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