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REAL-TIME SEIZURE PREDICTION INFORMED BY HIDDEN MARKOV MODEL EVENT STATES

机译:隐藏马尔可夫模型事件状态通知的实时量化预测

摘要

Provided is an implantable medical device for predicting and treating electrical disturbances in tissue. The medical device includes an implantable telemetry unit (ITU), and an implantable leads assembly including a first and a second electrode implanted in the tissue. A processor of the ITU is configured to perform training by receiving electrical signals input to the electrode circuit, parsing the electrical signals into dynamic event states using Bayesian Non-Parametric Markov Switching, and modeling each event state as a multi-dimensional probability distribution. The processor of the ITU is further configured to perform analysis of the electrical signals and therapy to the tissue by applying other electrical signals to the multi-dimensional distribution to predict future electrical disturbances in the tissue, and controlling the electrode circuit to apply an electrical therapy signal to the first and second electrodes to mitigate effects of the future electrical disturbances in the tissue.
机译:提供一种用于预测和治疗组织中的电干扰的可植入医疗装置。该医疗设备包括植入式遥测单元(ITU)和植入式引线组件,该组件包括植入组织中的第一和第二电极。 ITU的处理器被配置为通过接收输入到电极电路的电信号,使用贝叶斯非参数马尔可夫开关将电信号解析为动态事件状态并将每个事件状态建模为多维概率分布来执行训练。 ITU的处理器还被配置为通过将其他电信号施加到多维分布以预测组织中将来的电干扰,并控制电极电路以进行电疗法,来对电信号和对组织的疗法进行分析。向第一和第二电极发出信号,以减轻组织中未来电干扰的影响。

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