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Cuffless BP measurement using a correlation study of pulse transient time and heart rate

机译:使用脉搏瞬态时间和心率的相关性研究进行无袖血压测量

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The recent advancements in computing, signal processing and communication technologies have immensely improved public health care systems. As a result, new diagnostic instruments with better precision and compatibility with machines, gadgets and databases are developed. However, many of these technical marvels are young and still at research level, and are not very well known commercially. In the present study, a cuff-less blood pressure (BP) measurement was done using correlation study of pulse transient time and heart rate. Among the various vital biomedical signals that can be collected non-invasively, Electrocardiogram (ECG) and Photoplethysmograph (PPG) were taken simultaneously to determine electrical signals of the heart (ECG), the condition of the arteries (PPG) and together can be related to the arterial pressure of the systemic circulation (BP). This promises to give a composite overview of the cardiovascular system non-invasively. The BP estimation was done using non-linear 2nd order curve fitting regression model. The final objective is to develop a portable, non-invasive, biomedical signal acquisition system which not only can monitor, store and communicate the above mentioned biomedical signals but can also predict the BP by processing these signals. The device will be used for continuous monitoring especially for patients with cardiovascular complaints, and will be reduced to a mobile attachment, that is easy to use and can be operated by a paramedical staff (ASHA workers) with minimal training.
机译:计算,信号处理和通信技术的最新进展极大地改善了公共卫生保健系统。结果,开发了具有更高精确度并与机器,小工具和数据库兼容的新诊断仪器。但是,许多技术奇迹还很年轻,仍处于研究阶段,在商业上还不是很为人所知。在本研究中,使用脉搏瞬态时间与心率的相关性研究进行了无袖带血压(BP)测量。在可以无创收集的各种重要生物医学信号中,同时采集心电图(ECG)和光电容积描记器(PPG)以确定心脏的电信号(ECG),动脉状况(PPG)并可以相互关联到全身循环的动脉压(BP)。这有望无创地提供心血管系统的综合概述。 BP估计是使用非线性二阶曲线拟合回归模型完成的。最终目标是开发一种便携式,非侵入性的生物医学信号采集系统,该系统不仅可以监视,存储和传递上述生物医学信号,而且还可以通过处理这些信号来预测BP。该设备将用于连续监测,尤其是对于患有心血管疾病的患者,并将简化为可移动附件,该附件易于使用,并且只需很少的培训即可由辅助医疗人员(ASHA工人)进行操作。

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