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Model-based analysis of arterial pulse signals for tracking changes in arterial wall parameters: a pilot study

机译:基于模型的动脉脉冲信号分析,用于跟踪动脉壁参数的变化:试验研究

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Arterial wall parameters (i.e., radius and viscoelasticity) are prognostic markers for cardiovascular diseases (CVD), but their current monitoring systems are too complex for home use. Our objective was to investigate whether model-based analysis of arterial pulse signals allows tracking changes in arterial wall parameters using a microfluidic-based tactile sensor. The sensor was used to measure an arterial pulse signal. A data-processing algorithm was utilized to process the measured pulse signal to obtain the radius waveform and its first-order and second-order derivatives, and extract their key features. A dynamic system model of the arterial wall and a hemodynamic model of the blood flow were developed to interpret the extracted key features for estimating arterial wall parameters, with no need of calibration. Changes in arterial wall parameters were introduced to healthy subjects (n=5) by moderate exercise.The estimated changes in the radius, elasticity and viscosity were consistent with the findings in the literature (between pre-exercise and 1 min post-exercise: - 11% +/- 4%, 55% +/- 38% and 28% +/- 11% at the radial artery; - 7% +/- 3%, 36% +/- 28% and 16% +/- 8% at the carotid artery). The model-based analysis allows tracking changes in arterial wall parameters using a microfluidic-based tactile sensor. This study shows the potential of developing a solution to at-home monitoring of the cardiovascular system for early detection, timely intervention and treatment assessment of CVD.
机译:动脉壁参数(即半径和粘弹性)是用于心血管疾病(CVD)的预后标志物,但它们目前的监测系统对于家庭使用太复杂。我们的目的是调查动脉脉冲信号的基于模型的分析是否允许使用基于微流体的触觉传感器跟踪动脉壁参数的变化。传感器用于测量动脉脉冲信号。利用数据处理算法来处理测量的脉冲信号以获得半径波形及其一阶和二阶衍生物,并提取它们的关键特征。开发了动态系统模型和血流的血流动力学模型,以解释用于估计动脉壁参数的提取的关键特征,无需校准。通过适度的运动将动脉壁参数的变化引入健康受试者(n = 5)。半径,弹性和粘度的估计变化与文献中的结果一致(在运动前锻炼前和1分钟之间: - 桡动脉的11%+/- 4%,55%+/- 38%和28%+/- 11%; - 7%+/- 3%,36%+/- 28%和16%+/-颈动脉8%)。基于模型的分析允许使用基于微流体的触觉传感器跟踪动脉壁参数的变化。本研究表明,开发用于早期检测,及时干预和治疗CVD的心血管系统的局部监测溶液的潜力。

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