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Aortic Pulse Wave Velocity Measurement via Heart Sounds and Impedance Plethysmography

机译:通过心脏声音和阻抗体积描记法测量主动脉脉搏波速度测量

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The determination of the physical characteristic of the human arterial system, especially the stiffness of the aorta, is of major interest for estimating the risk of cardiovascular diseases. The most common measurement technique to get information about the state of the arterial system is the pulse wave analysis. It includes the measurement of the pulse wave velocity inside the arteries as well as its morphologically changes when propagating through the arteries. Since it is difficult to detect the pulse wave directly at the aorta, most available devices acquire the pulse wave at the extremities instead. Afterwards, complex models and algorithms are often utilized to estimate the original behavior of the pulse wave inside the aorta. This work presents an impedance plethysmography based technique to determine the aortic pulse wave velocity. By measuring the starting time of the pulse wave directly at its origin by the acquisition of heart sounds and the arrival time at the end of the aorta non-invasively via skin electrodes, unreliable complex models or algorithms aren't necessary anymore to determine the pulse wave velocity. After describing the measurement setup and the problem-specific hardware system, first measurements from a human subject are analyzed and discussed.
机译:确定人体动脉系统的物理特征,尤其是主动脉的刚度,对估计心血管疾病的风险是重大兴趣。获得关于动脉系统状态的信息的最常见的测量技术是脉搏波分析。它包括测量动脉内的脉搏波速度以及通过动脉繁殖时的形态学变化。由于难以直接检测到主动脉的脉冲波,因此最可用的设备在极端的脉冲中获取脉搏波。然后,复杂的模型和算法通常用于估计主动脉内部脉冲波的原始行为。该工作介绍了一种基于阻抗的体积学技术,用于确定主动脉脉冲波速度。通过采集心脏声音直接测量脉冲波的起始时间,并且在主动物的主动电极的主动脉末端的到达时间,不可靠的复杂模型或算法不再需要确定脉冲波速。在描述测量设置和特定于问题的硬件系统之后,分析并讨论了来自人类对象的首先测量。

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