脑腔隙性脑梗塞患者的局部颈动脉僵硬度、血液动力和血液粘度。

Irena Velcheva, Nadia Antonova, Tsocho Kmetski, Galina Tsonevska, Katerina Stambolieva, Anika Alexandrova, Blagovest Bechev
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引用次数: 0

摘要

目的:颈动脉僵化是脑血管小血管疾病发病机制中的一个重要因素。我们的研究旨在评估颈总动脉(CCA)局部动脉僵化与脑腔隙性脑梗塞(LI)患者血液动力和血液粘度的关系:方法:对22名慢性脑腔隙性脑梗塞患者和15名年龄匹配的对照组患者进行了检查。方法:对 22 名慢性脑腔隙性脑梗塞患者和 15 名年龄匹配的对照组患者进行了检查。超声波检查了 CCA 内中膜厚度(IMT)、CCA 局部僵化参数:胀度(DC)和顺应系数(CC)、α 和 β 僵硬度指数以及脉搏波速度(PWV)。计算了局部血液动力:周壁张力(CWT)和壁剪应力(WSS)。测量了患者和对照组的全血粘度(WBV)和剪切速率为 0.277 s - 1 至 94.5 s - 1 时的剪切应力:结果:与对照组相比,LI 患者的 IMT 值更高,DC 和 CC 显著下降,α 和 β 硬度指数及脉搏波速度增加。同时还发现,CWT 有明显增加,WSS 有明显下降。同时还发现 WBV 增加,剪应力显著增加。在左侧冠状动脉硬化症患者中,硬度指数的增加与年龄、胆固醇和左侧冠状动脉较高剪切率下的 WBV 的增加有关。在对照组中,IMT 和僵硬度指数与两个 CCA 的血液动力学因素和 WBV 显著相关,而左侧 CCA 的僵硬度指数与血液动力学力相关:结论:本研究结果表明,局部颈动脉僵硬度指数与血流动力学力和 WBV 的关系在 LI 患者和对照组中存在差异。
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Local carotid stiffness, hemodynamic forces and blood viscosity in patients with cerebral lacunar infarctions.

Objective: The carotid stiffness is an important factor in the pathogenesis of cerebrovascular small vessel disease. Our study aimed to evaluate the relation of the local arterial stiffness of the common carotid artery (CCA) to the hemodynamic forces and blood viscosity in patients with cerebral lacunar infarctions (LI).

Methods: Twenty-two patients with chronic LI and 15 age-matched controls were examined. An ultrasound examination of the CCA intima-media thickness (IMT), the parameters of local CCA stiffness: distensibility (DC) and compliance coefficients (CC), α and β stiffness indices and pulse wave velocity (PWV) was performed. The local hemodynamic forces were calculated: circumferential wall tension (CWT) and wall shear stress (WSS). Whole blood viscosity (WBV) and shear stresses at shear rates of 0.277 s- 1 to 94.5 s- 1 were measured in patients and controls.

Results: Higher values of IMT, a significant decrease of DC and CC and an increase of α and β stiffness indices and PWV in the LI patients compared to the controls were obtained. A parallel significant increase in CWT and a decrease in WSS was found. An increase in WBV and a significant increase in shear stresses were detected. In the LI patients, the increased stiffness indices were associated with an increase in age, cholesterol and WBV at higher shear rates in the left CCA. In the controls, the IMT and stiffness indices correlated significantly with the hemodynamic factors and WBV in both CCAs, while the stiffness indices correlated with the hemodynamic forces in the left CCA.

Conclusion: The results of the present study demonstrate different associations of the local carotid stiffness indices with the hemodynamic forces and WBV in patients with LI and controls.

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