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Diagnosis methods of cardiovascular disease, based on the acoustic-mechanotron principle of pulse wave sensing

机译:基于脉搏波传感的声机械力原理的心血管疾病诊断方法

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Diagnosis methods of cardiovascular disease, based on the acoustic-mechanotron principle of pulse wave sensing are considered. The proposed method of graphic recording of the pulse wave and pulse oscillation uses a device developed by the authors - sphygmograph Biotonar1 with acoustic sensitive pressure sensor, called acoustic mechanotron. By acoustic mechanotron with a modulated interelectrode gap imposed in the surface of the arteries, the mechanical oscillations of the artery wall are captured and converted into electric signals which then recorded as sphygmogram. The form of the pulse wave reflects a rate of pressure change in the arterial system, the condition of the vessel wall and the heart valve operation. It is shown that the use of an acoustic mechanotron as a pulse wave sensor can significantly improve the accuracy and reliability of real-time measurements under diagnostics monitoring of human hemodynamic parameters.
机译:考虑了基于脉搏波传感的声机械加速器原理的心血管疾病的诊断方法。所提出的脉搏波和脉搏振荡的图形记录方法是使用由作者开发的一种带有声敏压力传感器的血压计Biotonar 1 装置,称为声机械加速器。通过具有在电极表面上施加的经调制的极间间隙的声机械加速器,捕获动脉壁的机械振动并将其转换为电信号,然后将其记录为血压计。脉搏波的形式反映了动脉系统中的压力变化率,血管壁状况和心脏瓣膜操作。结果表明,在对人体血液动力学参数进行诊断监视的情况下,将声学机械加速器用作脉搏波传感器可以显着提高实时测量的准确性和可靠性。

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