Advances in mobile computing have paved the way for the development of several health applications using smartphone as a platform for data acquisition, analysis and presentation. Such areas where mhealth systems have been extensively deployed include monitoring of long term health conditions like Cardio Vascular Diseases and pulmonary disorders, as well as detection of changes from baseline measurements of such conditions. Asthma is one of the respiratory conditions with growing concern across the globe due to the economic, social and emotional burden associated with the ailment. The management and control of asthma can be improved by consistent monitoring of the condition in realtime since attack could occur anytime and anywhere. This paper proposes the use of smartphone equipped with embedded sensors, to capture and analyze early symptoms of asthma triggered by exercise. The system design is based on Decision Support System techniques for measuring and analyzing the level and type of patients physical activity as well as weather conditions that predispose asthma attack. Preliminary results show that smartphones can be used to monitor and detect asthma symptoms without other networked devices. This would enhance the usability of the health system while ensuring users data privacy, and reducing the overall cost of system deployment. Further, the proposed system can serve as a handy tool for a quick medical response for asthmatics in low income countries where there are limited access to specialized medical devices and shortages of health professionals. Development of such monitoring systems signals a positive response to lessen the global burden of asthma.
翻译:移动计算的进展为开发若干保健应用铺平了道路,利用智能手机作为获取、分析和展示数据的平台,利用智能手机开发若干保健应用,广泛部署卫生系统的这些领域包括监测心血管疾病和肺病等长期健康状况,以及检测从基线测量中发现此类状况的变化;哮喘是全球呼吸状况之一,由于与疾病有关的经济、社会和情感负担,这种呼吸状况日益令人关切;对哮喘的管理和控制可以通过连续实时监测改进,因为袭击随时随地可能发生,因此可以实时监测情况;本文件提议使用配备嵌入传感器的智能手机,捕捉和分析运动引发的哮喘早期症状;该系统的设计以决定支助系统技术为基础,用于衡量和分析病人身体活动的水平和类型以及容易引起哮喘袭击的天气条件;初步结果显示,智能手机可以用来监测和检测哮喘症状,而不用其他网络装置;这将提高卫生系统的可用性,同时确保用户数据隐私,并降低系统部署的总体成本;此外,拟议的系统的设计可以借助决定支持系统技术,测量和分析由运动引发的哮喘的早期症状,衡量和分析病人身体活动的水平,从而降低专业病征的症状,从而降低医疗系统对呼吸系统的压力。