Baek Hyun Jae, Chung Gih Sung, Kim Ko Keun, Park Kwang Suk
Graduate Program in Bioengineering, Seoul National University, Seoul, Korea.
IEEE Trans Inf Technol Biomed. 2012 Jan;16(1):150-8. doi: 10.1109/TITB.2011.2175742. Epub 2011 Nov 11.
We developed nonintrusive methods for simultaneous electrocardiogram, photoplethysmogram, and ballistocardiogram measurements that do not require direct contact between instruments and bare skin. These methods were applied to the design of a diagnostic chair for unconstrained heart rate and blood pressure monitoring purposes. Our methods were operationalized through capacitively coupled electrodes installed in the chair back that include high-input impedance amplifiers, and conductive textiles installed in the seat for capacitive driven-right-leg circuit configuration that is capable of recording electrocardiogram information through clothing. Photoplethysmograms were measured through clothing using seat mounted sensors with specially designed amplifier circuits that vary in light intensity according to clothing type. Ballistocardiograms were recorded using a film type transducer material, polyvinylidenefluoride (PVDF), which was installed beneath the seat cover. By simultaneously measuring signals, beat-to-beat heart rates could be monitored even when electrocardiograms were not recorded due to movement artifacts. Beat-to-beat blood pressure was also monitored using unconstrained measurements of pulse arrival time and other physiological parameters, and our experimental results indicated that the estimated blood pressure tended to coincide with actual blood pressure measurements. This study demonstrates the feasibility of our method and device for biological signal monitoring through clothing for unconstrained long-term daily health monitoring that does not require user awareness and is not limited by physical activity.
我们开发了用于同步测量心电图、光电容积脉搏波图和心冲击图的非侵入性方法,这些方法不需要仪器与裸露皮肤直接接触。这些方法被应用于设计一种用于无约束心率和血压监测的诊断椅。我们的方法通过安装在椅背中的电容耦合电极(包括高输入阻抗放大器)以及安装在座椅上用于电容驱动右腿电路配置的导电纺织品来实现,该配置能够通过衣物记录心电图信息。光电容积脉搏波图通过安装在座椅上的传感器透过衣物进行测量,这些传感器具有专门设计的放大器电路,其光强度会根据衣物类型而变化。心冲击图使用安装在座椅套下方的薄膜型换能器材料聚偏二氟乙烯(PVDF)进行记录。通过同时测量信号,即使由于运动伪影未记录到心电图,也能够监测逐搏心率。还使用对脉搏到达时间和其他生理参数的无约束测量来监测逐搏血压,我们的实验结果表明估计血压往往与实际血压测量值相符。这项研究证明了我们的方法和设备通过衣物进行生物信号监测以实现无约束长期日常健康监测的可行性,这种监测不需要用户知晓且不受身体活动限制。