IEEE Trans Biomed Eng. 2018 Apr;65(4):847-856. doi: 10.1109/TBME.2017.2723001. Epub 2017 Jul 4.
The objectives of this study were to design and develop an open-circuit electromagnetic resonant skin patch sensor, characterize the fluid volume and resonant frequency relationship, and investigate the sensor's ability to measure limb hemodynamics and pulse volume waveform features.
The skin patch was designed from an open-circuit electromagnetic resonant sensor comprised of a single baseline trace of copper configured into a square planar spiral which had a self-resonating response when excited by an external radio frequency sweep. Using a human arm phantom with a realistic vascular network, the sensor's performance to measure limb hemodynamics was evaluated.
The sensor was able to measure pulsatile blood flow which registered as shifts in the sensor's resonant frequencies. The time-varying waveform pattern of the resonant frequency displayed a systolic upstroke, a systolic peak, a dicrotic notch, and a diastolic down stroke. The resonant frequency waveform features and peak systolic time were validated against ultrasound pulse wave Doppler. A statistical correlation analysis revealed a strong correlation () between the resonant sensor peak systolic time and the pulse wave Doppler peak systolic time.
The sensor was able to detect pulsatile flow, identify hemodynamic waveform features, and measure heart rate with 98% accuracy.
The open-circuit resonant sensor design leverages the architecture of a thin planar spiral which is passive (does not require batteries), robust and lightweight (does not have electrical components or electrical connections), and may be able to wirelessly monitor cardiovascular health and limb hemodynamics.
本研究旨在设计和开发一种开路电磁共振皮肤贴片传感器,对其容积与共振频率的关系进行特征描述,并探究该传感器测量肢体血液动力学和脉搏容积波形特征的能力。
皮肤贴片由单个基线迹线的铜组成,铜被配置成一个方形平面螺旋,当受到外部射频扫描激励时,它会产生自共振响应。利用具有真实血管网络的人体手臂模型,评估了传感器测量肢体血液动力学的性能。
传感器能够测量脉动血流,其表现为传感器共振频率的变化。随时间变化的共振频率的波形模式显示出收缩期上升、收缩期峰值、降中切迹和舒张期下降。共振频率的波形特征和收缩期峰值时间与超声脉冲波多普勒进行了验证。相关性分析显示,传感器的收缩期峰值时间与脉冲波多普勒的收缩期峰值时间之间存在很强的相关性()。
该传感器能够检测脉动血流、识别血液动力学波形特征,并以 98%的准确率测量心率。
开路共振传感器的设计利用了薄平面螺旋的结构,该结构具有无源(不需要电池)、坚固轻便(没有电子元件或电气连接)的特点,可能能够无线监测心血管健康和肢体血液动力学。