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Method for measurement of arterial compliance by fusion of oscillometry and pulse wave velocity

机译:示波法和脉搏波速度融合测量动脉顺应性的方法

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Up until now estimation of arterial compliance has been performed either by analysis of arterial pressure changes with respect to volume changes or by inference based on pulse wave velocity (PWV). In this study we demonstrate the possibility of an approach to assess arterial compliance by fusing the two information sources namely the pressure/volume relationship obtained from oscillography and PWV data. The goal is to assess arterial properties easily and robustly, enhancing current hemodynamic monitoring. The approach requires as input signals: an electrocardiogram (ECG), a photo- plethysmogram (PPG) and the arterial oscillation as measured during non-invasive blood pressure measurements based on oscillometry with a cuff. These signals are fused by an algorithm using Bayesian principles underpinned by a physiological model. In our simulations, we demonstrate the feasibility to infer arterial compliance by our proposed strategy. A very first measurement on a healthy volunteer supports our findings from the simulation.Clinical Relevance— Arterial compliance/stiffness is recognized as a key hemodynamic parameter, which is not easily accessible and not a standard parameter currently. The presented method and obtained results are encouraging for future research in this area.
机译:到目前为止,已经通过分析相对于体积变化的动脉压变化或通过基于脉搏波速度(PWV)的推断来进行动脉顺应性的估计。在这项研究中,我们证明了通过融合两种信息源(从示波图和PWV数据获得的压力/容积关系)来评估动脉顺应性的方法的可能性。目的是轻松而稳健地评估动脉特性,以增强当前的血液动力学监测。该方法需要输入信号:心电图(ECG),光电容积描记图(PPG)和动脉振动,该测量是在基于袖带示波法的无创血压测量中进行的。这些信号通过使用基于生理模型的贝叶斯原理的算法进行融合。在我们的模拟中,我们证明了通过我们提出的策略来推断动脉顺应性的可行性。首次对健康志愿者进行的测量支持了我们从模拟中得出的结论。临床相关性—动脉顺应性/刚度被认为是关键的血液动力学参数,目前尚不容易获得,也不是标准参数。提出的方法和获得的结果对于该领域的未来研究是令人鼓舞的。

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