Continuous non-invasive blood pressure (BP) measurement can be realized by using pulse transit time (PTT) based on electrocardiogram (ECG) and pulse wave signal. Modulated magnetic signature of blood (MMSB) is a promi...Continuous non-invasive blood pressure (BP) measurement can be realized by using pulse transit time (PTT) based on electrocardiogram (ECG) and pulse wave signal. Modulated magnetic signature of blood (MMSB) is a promising approach to obtain PTT. The origin of MMSB is critical to establish the relationship between MMSB and BP. In this paper, two possible origins of MMSB, blood disturbance mechanism and angular variation mechanism, are analyzed and verified through three control experi-ments under different conditions. The influence of blood velocity alteration and blood volume alteration on magnetic field is investigated though blood flow simulation sys-tem. It is found that MMSB comes mainly from the periodic blood flow while the per-turbation caused by angular variation between sensitive axis of the magnetic sensor and geomagnetic field can be neglected. As to blood disturbance mechanism, the change of blood volume plays a decisive role while the effect of blood velocity altera-tion is negligible.展开更多
提出一种使用手机摄像头采集脉搏波的血压估计方法,称为基于脉搏波的多参数收缩压估计法(multiparameter estimation of systolic blood pressure based on pulse wave,MBPP).在运动实验中,分别通过手机摄像头和血压仪获得不同的脉搏波...提出一种使用手机摄像头采集脉搏波的血压估计方法,称为基于脉搏波的多参数收缩压估计法(multiparameter estimation of systolic blood pressure based on pulse wave,MBPP).在运动实验中,分别通过手机摄像头和血压仪获得不同的脉搏波时序数据和血压.然后,对脉搏波数据进行去噪,计算加速脉搏波,得到脉搏波传导时间.再计算得到脉搏波的特征点,从而计算心率.最后,选择脉搏波传导时间和心率两个参数与血压进行线性拟合,从而得到血压的回归方程.实验结果表明,MBPP方法准确性高,可以用于血压的测量.展开更多
文摘Continuous non-invasive blood pressure (BP) measurement can be realized by using pulse transit time (PTT) based on electrocardiogram (ECG) and pulse wave signal. Modulated magnetic signature of blood (MMSB) is a promising approach to obtain PTT. The origin of MMSB is critical to establish the relationship between MMSB and BP. In this paper, two possible origins of MMSB, blood disturbance mechanism and angular variation mechanism, are analyzed and verified through three control experi-ments under different conditions. The influence of blood velocity alteration and blood volume alteration on magnetic field is investigated though blood flow simulation sys-tem. It is found that MMSB comes mainly from the periodic blood flow while the per-turbation caused by angular variation between sensitive axis of the magnetic sensor and geomagnetic field can be neglected. As to blood disturbance mechanism, the change of blood volume plays a decisive role while the effect of blood velocity altera-tion is negligible.
基金Supported by Advanced Space Medico-Engineering Research Project of China(SJ200903,SJ201006)State Key Laboratory of Space Medicine Fundamentals and Application(SMFA09A16)
文摘提出一种使用手机摄像头采集脉搏波的血压估计方法,称为基于脉搏波的多参数收缩压估计法(multiparameter estimation of systolic blood pressure based on pulse wave,MBPP).在运动实验中,分别通过手机摄像头和血压仪获得不同的脉搏波时序数据和血压.然后,对脉搏波数据进行去噪,计算加速脉搏波,得到脉搏波传导时间.再计算得到脉搏波的特征点,从而计算心率.最后,选择脉搏波传导时间和心率两个参数与血压进行线性拟合,从而得到血压的回归方程.实验结果表明,MBPP方法准确性高,可以用于血压的测量.