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Design and Implementation of an Algorithm for Cardiac Pathologies Detection on Mobile Phone

机译:手机心脏病变检测算法的设计与实现

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The development and the design of telemedi-cine services have taken a great consideration and care in the domain of wireless communication nowadays. The set of these researches is concerned with old people and lack of infrastructures of reception for those who are at risk or tend to have deterioration in their health condition. Thus, several works of research contributed to develop telemed-icine services. They notably focus on the conception and the development of communication architectures between the actors of these systems, monitoring and the development of human's quality is based on the storage of the collected data at home and analytical tools, and processing of these large quantities of data. Therefore, it is useful to detect and prevent the occurrence of critical situations of a remote person, the transmission of the messages and alarms to concerned actors to be ready to intervene in a case of emergency. Many works and systems undertaken in this field carry out the complete analysis and synthesis of signals on large servers (great capacities, better resolutions...). Moreover, these systems would have required large means and a large infrastructure in their deployment (installation, configuration...), which generates the disadvantage of the excessive expenditure. In this paper, we suggest to introduce and implement this complete treatment for revealing critical situations and pathologies on a simple mobile phone by respecting theirs constraints. The principal objective is to permit a taking off for medical and social dependant people as aged ones, handicapped, in order to the adaptation with their environment domestically and make up their incapacities. In this case, it is indispensable to make a diagnostic in a real time and well manage the patient's computerized data between the various medical actors with the permanent security insurance of highly risky patients. Furthermore, the need to make a speed diagnostic of patients and to detect their health state, their parameters (medical information) of analyses with efficacy, allows us to gain time while monitoring the cardiac patient. It concerns the implementation of services on mobile terminals for transferring medical information and results of ECG analysis (calculated parameters) in a real time with ensuring the mobility, the permanent security and the reliability insurance in covered zone by the mobile network, PLMN (GSM/GPRS...). Our attention has been focused on the choice of a relevant work. It concerns an application on a mobile terminal (MIDlei) for detecting some cardiac pathologies and monitoring patient in a non-hospital setting. This paper recalls a complete architecture of an economic wireless transmission system with the implementation of an effective algorithm, adapted to the mobile terminal, allowing to the doctor to have the results of the ECG analysis. Thus, the stakes of setting up such systems are numerous, so much for patients, medical staff and the society in general.
机译:如今,远程医疗服务的开发和设计已经在无线通信领域中得到了极大的考虑和关注。这些研究涉及的问题是老年人和缺乏健康风险或倾向于健康状况恶化者的接收基础设施。因此,多项研究工作为发展远程医疗服务做出了贡献。他们尤其关注这些系统的参与者之间的通信体系结构的概念和发展,人类质量的监测和发展是基于在家中收集的数据的存储和分析工具,以及对这些大量数据的处理。因此,检测和防止远程人员的危急情况发生,将消息和警报传输给相关人员以在紧急情况下做好干预的准备非常有用。在该领域中进行的许多工作和系统都对大型服务器上的信号进行了完整的分析和综合(更大的容量,更好的分辨率...)。此外,这些系统在部署(安装,配置...)时将需要大量的资源和庞大的基础架构,这带来了过度支出的缺点。在本文中,我们建议引入并实施这种完整的处理方法,以通过尊重其局限性来揭示简单手机上的关键情况和病理。主要目的是允许有残障的医学和社会依赖者(如残疾人)起飞,以适应他们在国内的环境并弥补他们的无能。在这种情况下,必不可少的是要进行实时诊断,并通过高风险患者的永久安全保险,在各种医疗人员之间很好地管理患者的计算机数据。此外,需要对患者进行快速诊断并检测其健康状况,有效的分析参数(医学信息),这使我们能够在监视心脏患者的同时获得更多时间。它涉及在移动终端上实现用于实时传输医疗信息和ECG分析结果(计算参数)的服务,并通过移动网络PLMN(GSM / GSM)确保覆盖区域的移动性,永久性安全性和可靠性保障GPRS ...)。我们的注意力一直集中在相关工作的选择上。它涉及在移动终端(MIDlei)上的一种应用程序,用于检测一些心脏疾病并在非医院环境中监视患者。本文回顾了一种经济的无线传输系统的完整体系结构,该体系结构采用了一种适用于移动终端的有效算法,可以让医生获得ECG分析的结果。因此,建立这样的系统的风险是巨大的,对于患者,医务人员和整个社会而言,都是如此。

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