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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Novel Apparatus for the Multifaceted Evaluation of Arterial Function Through Transmural Pressure Manipulation
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A Novel Apparatus for the Multifaceted Evaluation of Arterial Function Through Transmural Pressure Manipulation

机译:一种通过透气压力操作进行动脉函数的多方面评价的新装置

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摘要

A novel apparatus for the multifaceted evaluation of artery function was developed. It measures endothelial and smooth muscle functions and the pressure-strain elastic modulus (E (p)). A rigid airtight chamber with an ultrasound probe was attached to the upper arm to manipulate the transmural pressure of the brachial artery. Endothelial function was measured via a standard flow-mediated dilation (FMD) protocol. Smooth muscle function was evaluated via a myogenic contraction of the artery following the application of negative pressure to the chamber and was named pressure-mediated contraction (PMC). E (p) was obtained by measuring the instantaneous increase in the artery diameter following the negative pressure application. The PMC and FMD values had a significant negative correlation with age, indicating that the age-related decrease in FMD is caused by the decay of endothelial and smooth muscle function. A consideration of PMC may help improve the accuracy of artery function measurement. E (p) in subjects aged > 40 years was found to be significantly higher in the supra-physiological pressure range than in the physiological one (p = 0.02); this did not occur in younger subjects. Artery stiffening may begin in the supra-physiological range, and this stiffness may also be used for the diagnosis of atherosclerosis.
机译:开发了一种新型动脉函数评价的新装置。它测量内皮和平滑肌功能和压力 - 应变弹性模量(E(P))。具有超声波探头的刚性气密室连接到上臂,以操纵肱动脉的透气压力。通过标准流动介导的扩张(FMD)方案测量内皮功能。在将负压施加到腔室后,通过动脉的肌遗传收缩评估平滑肌功能,并被命名为压力介导的收缩(PMC)。通过测量负压施用后动脉直径的瞬时增加来获得E(P)。 PMC和FMD值与年龄具有显着的负相关,表明FMD的年龄相关降低是由内皮和平滑肌功能的衰减引起的。 PMC的考虑可能有助于提高动脉函数测量的准确性。 e(p)在40岁以上的受试者中发现在Supra-生理压力范围内比生理学压力范围显着更高(p = 0.02);这并没有发生在较年轻的科目中。动脉加强可以在Supra生理范围内开始,并且该刚度也可用于诊断动脉粥样硬化。

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