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Personalized Monitors for Real-Time Detection of Physiological States

机译:个性化监视器,用于实时检测生理状态

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The authors introduce an algorithmic framework to process real-time physiological data using nonparametric Bayesian models under the context of developing and testing personalized wellness monitors. A wearable device aggregates signals from various sensors while periodically transmitting the collected data to a backend server, which builds custom user profiles based on inferred hidden Markov states. They discuss how these user profiles can be used in various contexts as proxies for fluctuating physiological states and leveragedfor various longitudinal classification tasks. Using data collected in a two-week study hosted at Jaslok Hospital, the authors show how physiological changes induced by different environments with various levels of stress can be quantified by the authors 'platform. To minimize the dependence on continuous connectivity with the backend server, they introduce a heuristic to enable real-time state identification using the modest processing capabilities of the wearable device.
机译:作者介绍了在开发和测试个性化健康监控器的背景下使用非参数贝叶斯模型处理实时生理数据的算法框架。可穿戴设备会汇总来自各种传感器的信号,同时将收集到的数据定期传输到后端服务器,该服务器根据推断的隐马尔可夫状态构建自定义用户配置文件。他们讨论了这些用户配置文件如何在各种情况下用作波动生理状态的代理以及如何用于各种纵向分类任务。作者利用在Jaslok医院进行的为期两周的研究中收集的数据,作者展示了如何通过作者的平台量化由不同环境,不同压力水平引起的生理变化。为了最大程度地减少对与后端服务器连续连接的依赖,他们引入了一种启发式技术,以利用可穿戴设备的适度处理能力实现实时状态识别。

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