Angelidis Pantelis A
Department of IT & Telecommunications Engineering, University of Western Macedonia, Karamanli and Lygeris, 50100 Kozani, Greece.
Int J Electron Healthc. 2010;5(4):355-70. doi: 10.1504/IJEH.2010.036207.
Today's state of the art in exercise physiology, professional athletics and sports practice in general clearly shows that the best results depend on the personalisation and continuous update of the recommendations provided to an athlete training, a sports lover or a person whose medical condition demands regular physical exercise. The vital signs information gathered in telemonitoring systems can be better evaluated and exploited if processed along with data from the subject's electronic health records, training history and performance statistics. In this context, the current paper intends to exploit modern smart miniaturised systems and advanced information systems towards the development of an infrastructure for continuous, non-invasive acquisition and advanced processing of vital signs information. In particular, it will look into wearable electronics embedded in textile capable of performing regular or exceptional measurements of vital physiological parameters and communicating them to an application server for further processing.
当今运动生理学、职业体育及一般体育实践的技术水平清楚地表明,最佳效果取决于为运动员训练、体育爱好者或因医疗状况需要定期体育锻炼的人所提供建议的个性化及持续更新。如果将远程监测系统收集的生命体征信息与受试者的电子健康记录、训练历史和表现统计数据一起处理,就能得到更好的评估和利用。在此背景下,本文旨在利用现代智能小型系统和先进信息系统,开发一个用于持续、无创获取生命体征信息并进行高级处理的基础设施。特别是,将研究嵌入纺织品中的可穿戴电子产品,该产品能够对重要生理参数进行常规或特殊测量,并将其传输到应用服务器进行进一步处理。