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Calibration of oscillometric non-invasive devices for monitoring blood pressure

机译:用于监测血压的示波法非侵入性设备的校准

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摘要

Blood pressure is one of the most important vital signs used to monitor a patient's medical condition and is widely measured in hospitals and at home. Automatic, non-invasive blood pressure (NIBP) monitoring devices measure systolic and diastolic blood pressures from the analysis of cuff pressure oscillations caused by periodic variations of blood pressure in an artery. Currently, clinical validation by comparing them to the auscultatory reference has been used to verify the performance of NIBP devices. However, there are presently no calibration methods for NIBP devices. Here, we propose an SI-traceable calibration method for oscillometric NIBP devices. The calibration system generates pressure-pulses at pre-determined cuff pressures, and with pre-determined amplitude, to the device-under-test. The uncertainty of each pulse is analyzed and used for the calculation of blood pressure (BP) uncertainty. The maximum uncertainty for systolic and diastolic BP using the newly developed calibration system is (0.74 and 0.60) mmHg (k = 2) depending on the pressure and amplitude of each pulse, as well as the number of pulses applied. The present method can be used for calibration of oscillometric NIBP devices.
机译:血压是用于监测患者医疗状况的最重要的生命体征之一,在医院和家庭中被广泛测量。自动无创血压(NIBP)监视设备通过分析由动脉血压的周期性变化引起的袖带压力振荡来测量收缩压和舒张压。当前,已经通过将其与听诊参考进行比较来进行临床验证,以验证NIBP设备的性能。但是,目前没有用于NIBP设备的校准方法。在这里,我们提出了一种用于示波NIBP设备的SI可追溯校准方法。校准系统以预定的袖带压力并以预定的幅度向被测设备产生压力脉冲。分析每个脉冲的不确定度,并将其用于血压(BP)不确定度的计算。使用新开发的校准系统,收缩压和舒张压的最大不确定度为(0.74和0.60)mmHg(k = 2),具体取决于每个脉冲的压力和幅度以及施加的脉冲数。本方法可用于校准示波NIBP设备。

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