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Non-Invasive Device for Blood Pressure Wave Acquisition by Means of Mechanical Transducer

机译:机械传感器采集血压波的无创装置

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摘要

Blood pressure wave monitoring provides interesting information about the patient’s cardiovascular function. For this reason, this article proposes a non-invasive device capable of capturing the vibrations (pressure waves) produced by the carotid artery by means of a pressure sensor encapsulated in a closed dome filled with air. When the device is placed onto the outer skin of the carotid area, the vibrations of the artery will exert a deformation in the dome, which, in turn, will lead to a pressure increase in its inner air. Then, the sensor inside the dome captures this pressure increase. By combining the blood pressure wave obtained with this device together with the ECG signal, it is possible to help the screening of the cardiovascular system, obtaining parameters such as heart rate variability (HRV) and pulse transit time (PTT). The results show how the pressure wave has been successfully obtained in the carotid artery area, discerning the characteristic points of this signal. The features of this device compare well with previous works by other authors. The main advantages of the proposed device are the reduced size, the cuffless condition, and the potential to be a continuous ambulatory device. These features could be exploited in ambulatory tests.
机译:血压波监测可提供有关患者心血管功能的有趣信息。因此,本文提出了一种非侵入性装置,该装置能够通过封装在充满空气的封闭穹顶中的压力传感器捕获颈动脉产生的振动(压力波)。当将设备放置在颈动脉区域的外皮上时,动脉的振动将在穹顶中产生变形,进而导致其内部空气压力升高。然后,圆顶内部的传感器捕获到这种压力增加。通过将使用此设备获得的血压波与ECG信号结合在一起,可以帮助筛查心血管系统,获得诸如心率变异性(HRV)和脉搏传播时间(PTT)之类的参数。结果表明,如何在颈动脉区域成功获得压力波,从而辨别该信号的特征点。该设备的功能与其他作者先前的作品相提并论。所提出的装置的主要优点是减小的尺寸,无袖带状况以及成为连续非卧床装置的可能性。这些功能可以在动态测试中加以利用。

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