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ECG INTERPRETATION TASK SHARING RULES IN A DISTRIBUTED WEARABLE MONITORING SYSTEM

机译:分布式可穿戴监控系统中的ECG解释任务共享规则

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This paper addresses the problem of interpretation task sharing between the central server and the remote wearable ECG recorder. Adaptive task sharing is presented as an alternative to the remote embedded and to the centralized interpretation commonly used today. The patient-dependent adaptation of the task sharing needs an extreme care, since it is advantageous only if based on medically justified rules. Three procedures are involved in optimization and control of the task sharing: human expert-derived diagnosis priority, statistic-based automatic assessment of result reliability and machine estimation of remote resources availability. The paper discusses these procedures and their impact to the distant interpretation performance and diagnosis reliability. Presented approach was designed and programmed in C++ language and consists an integral part of distributed architecture of the ECG interpretive software. The prototype implemented in the PDA-based ECG monitor and the stationary server enabled the assessment of the task sharing correctness for standard test signals. With the promising results achieved with the prototype we plan to transfer the task sharing rules to a multithreaded man-supervised server.
机译:本文解决了中央服务器和远程可穿戴式ECG记录器之间的解释任务共享问题。自适应任务共享是远程嵌入式和当今常用的集中式解释的替代方案。取决于患者的任务共享适应需要格外小心,因为只有基于医学上合理的规则,这才是有利的。任务共享的优化和控制涉及三个过程:由专家得出的诊断优先级,对结果可靠性的基于统计的自动评估以及对远程资源可用性的机器估计。本文讨论了这些程序及其对远距离解释性能和诊断可靠性的影响。提出的方法是用C ++语言设计和编程的,它构成ECG解释软件的分布式体系结构的组成部分。在基于PDA的ECG监视器和固定服务器中实现的原型可以评估标准测试信号的任务共享正确性。借助原型取得的令人鼓舞的结果,我们计划将任务共享规则转移到多线程的人工监督服务器上。

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