Lee Ren-Guey, Chen Kuei-Chien, Hsiao Chun-Chieh, Tseng Chwan-Lu
Department of Electronic Engineering, National Taipei University of Technology, Taipei 10643, Taiwan, R.O.C.
IEEE Trans Inf Technol Biomed. 2007 Sep;11(5):507-17. doi: 10.1109/titb.2006.888701.
Hypertension and arrhythmia are chronic diseases, which can be effectively prevented and controlled only if the physiological parameters of the patient are constantly monitored, along with the full support of the health education and professional medical care. In this paper, a role-based intelligent mobile care system with alert mechanism in chronic care environment is proposed and implemented. The roles in our system include patients, physicians, nurses, and healthcare providers. Each of the roles represents a person that uses a mobile device such as a mobile phone to communicate with the server setup in the care center such that he or she can go around without restrictions. For commercial mobile phones with Bluetooth communication capability attached to chronic patients, we have developed physiological signal recognition algorithms that were implemented and built-in in the mobile phone without affecting its original communication functions. It is thus possible to integrate several front-end mobile care devices with Bluetooth communication capability to extract patients' various physiological parameters [such as blood pressure, pulse, saturation of haemoglobin (SpO2), and electrocardiogram (ECG)], to monitor multiple physiological signals without space limit, and to upload important or abnormal physiological information to healthcare center for storage and analysis or transmit the information to physicians and healthcare providers for further processing. Thus, the physiological signal extraction devices only have to deal with signal extraction and wireless transmission. Since they do not have to do signal processing, their form factor can be further reduced to reach the goal of microminiaturization and power saving. An alert management mechanism has been included in back-end healthcare center to initiate various strategies for automatic emergency alerts after receiving emergency messages or after automatically recognizing emergency messages. Within the time intervals in system setting, according to the medical history of a specific patient, our prototype system can inform various healthcare providers in sequence to provide healthcare service with their reply to ensure the accuracy of alert information and the completeness of early warning notification to further improve the healthcare quality. In the end, with the testing results and performance evaluation of our implemented system prototype, we conclude that it is possible to set up a complete intelligent healt care chain with mobile monitoring and healthcare service via the assistance of our system.
高血压和心律失常是慢性病,只有持续监测患者的生理参数,并在健康教育和专业医疗护理的全力支持下,才能得到有效预防和控制。本文提出并实现了一种在慢性病护理环境中具有警报机制的基于角色的智能移动护理系统。我们系统中的角色包括患者、医生、护士和医疗服务提供者。每个角色代表一个使用移动设备(如手机)与护理中心设置的服务器进行通信的人,这样他或她就可以不受限制地四处走动。对于配备蓝牙通信功能的商用手机附加到慢性病患者身上,我们开发了生理信号识别算法,并在不影响其原始通信功能的情况下将其实现并内置到手机中。因此,可以集成多个具有蓝牙通信功能的前端移动护理设备,以提取患者的各种生理参数[如血压、脉搏、血红蛋白饱和度(SpO2)和心电图(ECG)],无空间限制地监测多个生理信号,并将重要或异常的生理信息上传到医疗中心进行存储和分析,或将信息传输给医生和医疗服务提供者进行进一步处理。因此,生理信号提取设备只需处理信号提取和无线传输。由于它们无需进行信号处理,其外形尺寸可以进一步减小,以达到微型化和节能的目标。后端医疗中心包含一个警报管理机制,在接收到紧急消息或自动识别紧急消息后启动各种自动紧急警报策略。在系统设置的时间间隔内,根据特定患者的病史,我们的原型系统可以依次通知各种医疗服务提供者提供医疗服务并要求他们回复,以确保警报信息的准确性和预警通知的完整性,从而进一步提高医疗质量。最后,通过对我们实现的系统原型的测试结果和性能评估,我们得出结论,借助我们的系统可以建立一个完整的智能医疗护理链,实现移动监测和医疗服务。