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Combining rate-adaptive cardiac pacing algorithms via multiagent negotiation

机译:通过多主体协商将速率自适应的心脏起搏算法组合在一起

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Simulating and controlling physiological phenomena are notoriously complex tasks to tackle and require accurate models of the phenomena of interest. Currently, most physiological processes are described by a set of partial models capturing specific aspects of the phenomena, and usually their composition does not produce effective comprehensive models. A current open issue is thus the development of techniques able to effectively describe a phenomenon starting from partial models. This is particularly relevant for heart rate regulation modeling where a large number of heterogeneous partial models exists. In this paper we make the original proposal of adopting a multiagent paradigm, called anthropic agency, to provide a powerful and flexible tool for combining partial models of heart rate regulation for adaptive cardiac pacing applications. The partial models are embedded in autonomous computational entities, called agents, that cooperatively negotiate in order to smooth their conflicts on the values of the variables forming the global model the multiagent system provides. We experimentally evaluate our approach and we analyze its properties.
机译:众所周知,模拟和控制生理现象是一项复杂的任务,需要解决并需要对感兴趣现象进行精确建模。当前,大多数生理过程是通过捕获现象特定方面的一组局部模型来描述的,通常它们的组成不能产生有效的综合模型。因此,当前的公开问题是能够从局部模型开始有效描述现象的技术的发展。这对于存在大量异构部分模型的心率调节模型特别重要。在本文中,我们提出了采用多人范式(称为人为代理)的原始建议,以提供强大而灵活的工具,以结合心率调节的部分模型以适应心脏起搏应用。局部模型被嵌入称为代理的自治计算实体中,这些实体进行协作协商以使它们在形成多代理系统提供的全局模型的变量的值上的冲突趋于平滑。我们通过实验评估我们的方法,并分析其性质。

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