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Continuous and Noninvasive Blood Pressure Estimation by Two-Sensor Measurement of Pulse Transit Time

机译:通过两传感器测量脉搏传播时间来连续且无创地估算血压

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Continuous and noninvasive monitoring of blood pressure is of vital importance in critical care. Its role in management of patients with or at risk of cardiovascular disease is ever increasing. Pulse-transit-time based approaches for estimation of blood pressure hold potential to provide a convenient solution, however there is a need to improve their accuracy. We employ a novel two-sensor technique using photoplethysmogram and piezo sensors for a more accurate measurement of pulse transit time (PTT). PTT is then mapped to arterial blood pressure via calibration process. We implement two different techniques for the PTT measurement. The first technique uses two pulse sensors, while the second technique makes use of one pulse sensor and one piezo element. Clinical data is collected from 46 subjects in the form of systolic, diastolic and mean blood pressure to provide a reference for the calibration step in two techniques. The results show decrease in error of systolic arterial pressure (SAP) and mean arterial pressure (MAP) for the second technique. The root mean square (RMS) error, measured for the calibration equations, reduced from 7.72 mm Hg to 5.26 mm Hg for SAP and from 7.07 mm Hg to 6.30 mm Hg for MAP. RMS error, measured by leave-one-out method, reduced from 8.45 mm Hg to 5.77 mm Hg for SAP and from 7.67 mm Hg to 6.90 mm Hg for MAP.
机译:在重症监护中,连续且无创地监测血压至关重要。它在患有心血管疾病或有心血管疾病风险的患者的管理中的作用不断增加。用于估计血压的基于脉冲渡越时间的方法可提供一种方便的解决方案,但是需要提高其准确性。我们采用一种新颖的两传感器技术,利用光电容积描记器和压电传感器来更精确地测量脉冲传输时间(PTT)。然后通过校准过程将PTT映射到动脉血压。我们采用两种不同的技术进行PTT测量。第一种技术使用两个脉冲传感器,而第二种技术使用一个脉冲传感器和一个压电元件。以收缩压,舒张压和平均血压的形式从46位受试者中收集临床数据,为两种技术中的校准步骤提供参考。结果表明,第二种技术的收缩期动脉压(SAP)和平均动脉压(MAP)的误差减小。对于校准方程式测量的均方根(RMS)误差,对于SAP,从7.72 mm Hg降低到5.26 mm Hg,对于MAP,从7.07 mm Hg降低到6.30 mm Hg。通过留一法测量的RMS误差对于SAP从8.45毫米汞柱降至5.77毫米汞柱,而对于MAP从7.67毫米汞柱降至6.90毫米汞柱。

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