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Measurement of blood pressure using magnetic method of blood pulse acquisition

机译:血压脉冲采集磁法测量血压

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Current cuffless method of Arterial Blood Pressure (ABP) measurements can be continuously calculated from pulse wave velocity and the Pulse Transit Time (PTT). PTT is usually recorded as the time delay from the R wave of Electrocardiographic (ECG) signal to the upstroke of a peripheral pulse wave signal measured using Photoplethysmographic (PPG) sensors or alternatively from the sound of Phonocardiographic (PCG) signal. This paper proposes an alternative novel method of measuring the magnetic disturbance, using a Giant-Magneto-Resistance (GMR) based sensor, created by blood flow in a uniform magnetic field for peripheral pulse wave signal measurements allowing an optical independent measurement system for ABP. The magnetic disturbance created by blood flow in a uniform magnetic field allows for the sensing of the peripheral pulse wave... Measurements were done on 10 subjects-aged between 22 to 25 years old where the ABP measured using the PTT correlates well within 8% error with respect to the Mean Arterial blood Pressure (MAP) measured from commercially available cuff based automated ABP measurement devices.
机译:可以从脉搏波速度和脉冲传输时间(PTT)连续计算动脉血压(ABP)测量的电流诱令方法。 PTT通常被记录为从心电图(ECG)信号的R波的时间延迟,以使用光电偶读数(PPG)传感器测量的外围脉冲波信号的上行,或者或者从小心动图(PCG)信号的声音。本文提出了一种使用基于磁体阻力(GMR)的传感器的替代新的方法,用于使用基于磁体电阻(GMR)的传感器,在均匀磁场中的血流,用于外围脉冲波信号测量,允许用于ABP的光学独立测量系统。由均匀磁场中的血流产生的磁扰动允许对周围脉冲波的感测,在22至25岁的10岁之间进行测量,其中使用PTT测量的ABP在8%以内相关基于市售的基于袖带的自动ABP测量装置测量的平均动脉血压(MAP)误差。

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