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Autoadaptivity and Optimization in Distributed ECG Interpretation

机译:分布式ECG解释中的自适应性和优化

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This paper addresses principal issues of the ECG interpretation adaptivity in a distributed surveillance network. In the age of pervasive access to wireless digital communication, distributed biosignal interpretation networks may not only optimally solve difficult medical cases, but also adapt the data acquisition, interpretation, and transmission to the variable patient's status and availability of technical resources. The background of such adaptivity is the innovative use of results from the automatic ECG analysis to the seamless remote modification of the interpreting software. Since the medical relevance of issued diagnostic data depends on the patient's status, the interpretation adaptivity implies the flexibility of report content and frequency. Proposed solutions are based on the research on human experts behavior, procedures reliability, and usage statistics. Despite the limited scale of our prototype client-server application, the tests yielded very promising results: the transmission channel occupation was reduced by 2.6 to 5.6 times comparing to the rigid reporting mode and the improvement of the remotely computed diagnostic outcome was achieved in case of over 80% of software adaptation attempts.
机译:本文讨论了分布式监视网络中ECG解释适应性的主要问题。在无线数字通信无处不在的时代,分布式生物信号解释网络不仅可以最佳地解决医疗难题,而且还可以使数据获取,解释和传输适应可变患者的状况和技术资源的可用性。这种适应性的背景是从自动心电图分析到对解释软件的无缝远程修改的结果的创新使用。由于发布的诊断数据的医学相关性取决于患者的状况,因此解释适应性意味着报告内容和频率的灵活性。提议的解决方案基于对人类专家行为,程序可靠性和使用情况统计的研究。尽管我们的原型客户服务器应用程序规模有限,但测试仍取得了非常可喜的结果:与严格的报告模式相比,传输信道占用减少了2.6到5.6倍,并且在出现以下情况时,可以实现远程计算的诊断结果的改进:超过80%的软件适应尝试。

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