Lee Hooseok, Chung Heewon, Ko Hoon, Jeong Changwon, Noh Se-Eung, Kim Chul, Lee Jinseok
Department of Biomedical Engineering, Wonkwang University College of Medicine, Iksan, Republic of Korea.
Department of Rehabilitation Medicine, Wonkwang University Colledge of Medicine, Iksan, Republic of Korea.
PLoS One. 2017 Oct 31;12(10):e0187108. doi: 10.1371/journal.pone.0187108. eCollection 2017.
We describe a wearable sensor developed for cardiac rehabilitation (CR) exercise. To effectively guide CR exercise, the dedicated CR wearable sensor (DCRW) automatically recommends the exercise intensity to the patient by comparing heart rate (HR) measured in real time with a predefined target heart rate zone (THZ) during exercise. The CR exercise includes three periods: pre-exercise, exercise with intensity guidance, and post-exercise. In the pre-exercise period, information such as THZ, exercise type, exercise stage order, and duration of each stage are set up through a smartphone application we developed for iPhones and Android devices. The set-up information is transmitted to the DCRW via Bluetooth communication. In the period of exercise with intensity guidance, the DCRW continuously estimates HR using a reflected pulse signal in the wrist. To achieve accurate HR measurements, we used multichannel photo sensors and increased the chances of acquiring a clean signal. Subsequently, we used singular value decomposition (SVD) for de-noising. For the median and variance of RMSEs in the measured HRs, our proposed method with DCRW provided lower values than those from a single channel-based method and template-based multiple-channel method for the entire exercise stage. In the post-exercise period, the DCRW transmits all the measured HR data to the smartphone application via Bluetooth communication, and the patient can monitor his/her own exercise history.
我们描述了一种为心脏康复(CR)运动开发的可穿戴传感器。为了有效指导CR运动,专用的CR可穿戴传感器(DCRW)通过在运动期间将实时测量的心率(HR)与预定义的目标心率区(THZ)进行比较,自动向患者推荐运动强度。CR运动包括三个阶段:运动前、有强度指导的运动和运动后。在运动前阶段,通过我们为iPhone和安卓设备开发的智能手机应用程序设置诸如THZ、运动类型、运动阶段顺序和每个阶段的持续时间等信息。设置好的信息通过蓝牙通信传输到DCRW。在有强度指导的运动阶段,DCRW使用手腕处的反射脉冲信号持续估计心率。为了实现准确的心率测量,我们使用了多通道光电传感器并增加了获取清晰信号的机会。随后,我们使用奇异值分解(SVD)进行去噪。对于测量心率中的均方根误差(RMSE)的中位数和方差,我们提出的使用DCRW的方法在整个运动阶段提供的值低于基于单通道的方法和基于模板的多通道方法的值。在运动后阶段,DCRW通过蓝牙通信将所有测量的心率数据传输到智能手机应用程序,患者可以监测自己的运动历史。