Biomechanical properties of the ascending aorta in patients with arterial hypertension by velocity vector imaging

被引:0
作者
Li Yu
Ganqiong Xu
Qichang Zhou
Mingzhi Ouyang
Lei Gao
Shi Zeng
机构
[1] Second Xiangya Hospital of Central South University,Department of Ultrasound Diagnosis
来源
The International Journal of Cardiovascular Imaging | 2024年 / 40卷
关键词
Velocity vector imaging; Arterial hypertension; Ascending aorta; Strain; Biomechanical properties;
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学科分类号
摘要
Aortic stiffness is an important risk factor for cardiovascular events and morbidity. Increased aortic stiffness is associated with an increase in cardiac and vascular hypertension-related organ damage. To evaluate the biomechanical properties of the ascending aorta (AA) in patients with arterial hypertension (AH) by velocity vector imaging (VVI). Ninety-five patients with AH and 53 normal healthy control participants were prospectively enrolled. AA biomechanical properties, i.e., ascending aortic global longitudinal strain (ALS), ascending aortic global circumferential strain (ACS), and fractional area change (FAC), were evaluated by VVI. Relative wall thickness (RWT) and left ventricular mass (LVM) were calculated. Pulsed Doppler early transmitral peak flow velocity (E), early diastolic mitral annular velocity (e′), left ventricular global longitudinal strain (GLS), distensibility (D) and stiffness index (SI) of AA were also obtained. The ALS, ACS and FAC were significantly lower in the AH patients, especially in those with ascending aorta dilatation (AAD), than in the normal healthy control subjects. The patients with AAD had a higher E/e′ ratio, RWT, LVM and SI and a lower GLS and D than patients without AAD and normal healthy volunteers (p < 0.05). There were significant associations between biomechanical properties and D, SI, E/e′ and GLS (ALS and D: r = 0.606, ALS and SI: r = − 0.645, ALS and E/e′: r = − 0.489, ALS and GLS: r = 0.466, ACS and D: r = 0.564, ACS and SI: r = − 0.567, ACS and E/e′: r = − 0.313, ACS and GLS: r = 0.320, FAC and D: r = 0.649, FAC and SI: r = − 0.601, FAC and E/e′: r = − 0.504, FAC and GLS: r = 0.524, respectively, p < 0.05). The biomechanical properties of AA were impaired in patients with AH, especially patients with ascending aorta dilatation. Hypertension is associated with a high prevalence of diastolic and systolic dysfunction and increased arterial stiffness. Further study is needed to evaluate the clinical application of AA biomechanical properties by VVI.
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页码:397 / 405
页数:8
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共 256 条
[1]  
Milan A(2019)Prevalence of proximal ascending aorta and target organ damage in hypertensive patients: the multicentric ARGO-SIIA project (Aortic remodeling in hypertension of the Italian society of hypertension) J Hypertens 37 57-64
[2]  
Degli Esposti D(2006)Arterial stiffness and risk of coronary heart disease and stroke: the Rotterdam study Circulation 113 657e63-223
[3]  
Salvetti M(2005)Global burden of hypertension: analysis of worldwide data Lancet 365 217-1880
[4]  
Izzo R(2018)Aortic stiffness, pressure and flow pulsatility, and target organ damage J Appl Physiol 125 1871-S97
[5]  
Moreo A(2012)Aortic stiffness as a tissue biomarker for predicting future cardiovascular events in asymptomatic hypertensive subjects Ann Med 44 S93-2219
[6]  
Pucci G(2013)2013 ESH/ESC guidelines for the management of arterial Hypertension: the task force for the management of arterial hypertension of the European Society of Hypertension (ESH) and of the European Society of Cardiology (ESC) Eur Heart J 34 2159-2055
[7]  
Bruno G(2014)Longitudinal and circumferential strain of the proximal aorta J Am Heart Assoc 3 2047-636
[8]  
Pareo I(2019)Proximal aorta longitudinal strain predicts aortic root dilation rate and aortic events in marfan syndrome Eur Heart J 40 630-1388
[9]  
Parini A(2010)(2010) Ultrasonographic strain imaging is superior to conventional noninvasive measures of vascular stiffness in the detection of age-dependent differences in the mechanical properties of the common carotid artery Eur J Echocardiogr 11 1382-26
[10]  
Paini A(2009)Usefulness of aortic strain analysis by velocity vector imaging as a new echocardiographic measure of arterial stiffness J Am Soc Echocardiogr 22 20-1207