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Non-Symmetrical Double-Logistic Analysis of 24 Hour Arterial Stiffness Profile in Normotensive and Hypertensive Subjects

机译:正常血压和高血压科目24小时动脉僵硬谱的非对称双重物流分析

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Objectives: Mechanisms underlying the circadian profile of cardiovascular events (CE) are not totally understood. Whether circadian changes in arterial stiffness (AS) could be related to the circadian profile of CE remains to be investigated. As yet, there is no accepted way to measure circadian profiles or nocturnal-related and/or morning-related changes in cardiovascular variables. The aim of this study was to characterize the circadian pattern and day-night and night-day changes of AS in untreated hypertensive (HG) and healthy subjects (NG), using a recently developed non-symmetrical six-parameter double-logistic model. Methods: Seven hypertensive and seven normotensive subjects underwent 24 hour ambulatory recordings of blood pressure (BP), heart rate (HR) and aorto-brachial pulse transit time (PTT{sub}(AB)) and pulse transit velocity index (PTV{sub}(AB)). PTT{sub}(AB) and PTV{sub}(AB) are inversely and directly related to AS, respectively. The circadian profile and transitional periods (day-night and night-day) were analyzed using a model described by a six-parameter double logistic equation. Conclusions: The model was adequate to characterize the circadian pattern of AS. We provide the first evidence that AS in humans follows an asymmetric circadian pattern and that this differs between NG and HG. In both NG and HG, AS had a circadian profile, with the highest levels in the night. HG showed larger levels of AS, larger BP variations and rate of change and minor changes in AS during transitional periods.
机译:目标:心血管事件(CE)昼夜核心概况(CE)的机制并不完全理解。昼夜动脉僵硬(AS)的昼夜变化是否可能与CE仍有待调查的CECADIAN概况有关。尚于,没有接受的方法来测量心血管变量中昼夜曲线或夜行相关和/或夜间相关变化。本研究的目的是,使用最近开发的非对称的六参数双程模型,表征了昼夜昼夜昼夜变化,如未处理的高血压(HG)和健康受试者(NG)。方法:七个高血压和七个正常血压血压(BP),心率(HR)和主动脉 - 脉冲脉冲传输时间(PTT {Sub}(AB))和脉冲传输速度指数(PTV {Sub }(ab))。 PTT {sub}(ab)和ptv {sub}(ab)与分别和直接相关。使用六参数双勤方程描述的模型分析昼夜型材和过渡时期(日夜和夜间)。结论:该模型足以表征昼夜节约模式。我们提供的第一个证据表明,在人类遵循不对称的昼夜昼夜模式,这在NG和HG之间不同。在NG和HG中,与昼夜型材一样,夜间的最高水平。 HG显示出更大的水平,更大的BP变化和变化率和变化率和在过渡时期期间的变化。

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