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Estimation of shear-stress-induced endothelial nitric oxide production from flow-mediated dilation

机译:通过流量介导的扩张估算剪应力诱导的内皮一氧化氮的产生

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Vascular endothelial function assessment yields important diagnostic and prognostic information on patients with (or at risk of) cardiovascular diseases. Flow-mediated dilation (FMD) is the most widely used noninvasive method for assessing the endothelial function. In this method, the magnitude of FMD is used as a surrogate marker for the endothelial function. However, because vasodilation is affected by several other factors as well, the details of how this marker represents the endothelial function are not fully understood. Previously, we developed a mathematical model for vasodilation with intra- and intercellular pathways. In this study, we estimated the shear-stress-induced endothelial nitric oxide production from FMD measurements using the model. The results suggested that the accuracy of the estimated endothelial function obeys the characteristics of the shear stress added to the vascular wall. Furthermore, we showed that the FMD response describes not only the endothelial function but also vascular wall characteristics.
机译:血管内皮功能评估可为患有心血管疾病(或有患心血管疾病)的患者提供重要的诊断和预后信息。血流介导的扩张(FMD)是评估内皮功能最广泛使用的非侵入性方法。在这种方法中,FMD的大小用作内皮功能的替代标记。但是,由于血管舒张也受其他几个因素的影响,因此尚未完全了解该标志物如何代表内皮功能的细节。以前,我们开发了一种通过细胞内和细胞间途径进行血管舒张的数学模型。在这项研究中,我们使用该模型通过FMD测量估算了剪切应力诱导的内皮一氧化氮的产生。结果表明,估计的内皮功能的准确性服从施加于血管壁的切应力的特征。此外,我们表明,FMD反应不仅描述了内皮功能,还描述了血管壁特征。

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