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Using Temporal Abduction for Biosignal Interpretation: A Case Study on QRS Detection

机译:利用时间绑架进行生物信号解释:QRS检测的案例研究

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In this work, we propose an abductive framework for bio signal interpretation, based on the concept of Temporal Abstraction Patterns. A temporal abstraction pattern defines an abstraction relation between an observation hypothesis and a set of observations constituting its evidence support. New observations are generated abductively from any subset of the evidence of a pattern, building an abstraction hierarchy of observations in which higher levels contain those observations with greater interpretative value of the physiological processes underlying a given signal. Non-monotonic reasoning techniques have been applied to this model in order to find the best interpretation of a set of initial observations, permitting even to correct these observations by removing, adding or modifying them in order to make them consistent with the available domain knowledge. Some preliminary experiments have been conducted to apply this framework to a well known and bounded problem: the QRS detection on ECG signals. The objective is not to provide a new better QRS detector, but to test the validity of an abductive paradigm. These experiments show that a knowledge base comprising just a few very simple rhythm abstraction patterns can enhance the results of a state of the art algorithm by significantly improving its detection F1-score, besides proving the ability of the abductive framework to correct both sensitivity and specificity failures.
机译:在这项工作中,我们基于时间抽象模式的概念,提出了一个用于生物信号解释的外展框架。时间抽象模式定义观察假设与构成其证据支持的一组观察之间的抽象关系。从模式证据的任何子集中归纳出新的观测值,建立观测值的抽象层次结构,其中更高级别的观测值包含那些具有给定信号所依据的生理过程的较大解释价值的观测值。非单调推理技术已应用于此模型,以便找到一组初始观测值的最佳解释,甚至允许通过删除,添加或修改它们来校正这些观测值,以使它们与可用的领域知识保持一致。已经进行了一些初步的实验,以将该框架应用于一个众所周知的有限问题:对ECG信号的QRS检测。目的不是提供新的更好的QRS检测器,而是测试外展范式的有效性。这些实验表明,仅包含几个非常简单的节奏抽象模式的知识库,就可以通过显着提高算法的检测F1分数来增强最新算法的结果,此外还可以证明归纳框架既可以校正灵敏度也可以校正特异性。失败。

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