首页> 外国专利> SYSTEM AND METHOD FOR RISK STRATIFICATION BASED ON DYNAMIC NONLINEAR ANALYSIS AND COMPARISON OF CARDIAC REPOLARIZATION WITH OTHER PHYSIOLOGICAL SIGNALS

SYSTEM AND METHOD FOR RISK STRATIFICATION BASED ON DYNAMIC NONLINEAR ANALYSIS AND COMPARISON OF CARDIAC REPOLARIZATION WITH OTHER PHYSIOLOGICAL SIGNALS

机译:基于动态非线性分析的风险分层系统和方法与其他生理信号的心脏倒奏比较

摘要

In accordance with an aspect of the present invention, a system and method allows for the assessment of health and mortality based on dynamic nonlinear calculations of self-similar fluctuation patterns in a time series of QT intervals and of other physiological signals, such as RR intervals, temperature, blood pressure, respiration, saturation of peripheral oxygen, intracardiac pressures, and electroencephalogram. In order to nonlinearly determine health and mortality, time series of QT intervals and of other physiological signals (e.g., RR intervals) are simultaneously obtained, and entropy values are calculated for each signal over the same temporal interval. “EntropyX” is calculated from relative changes between moments and entropy of QT intervals and those of other physiological signals over seconds to days. The absolute and relative entropy values at a specific time point and/or subsequent changes in entropy over future time points can be used to determine a treatment plan for the subject.
机译:根据本发明的一个方面,系统和方法允许基于在QT间隔的时间序列和其他生理信号的时间序列中的自我类似波动模式的动态非线性计算来评估健康和死亡率,例如RR间隔,温度,血压,呼吸,外周氧的饱和,心内压力和脑电图。为了非线性地确定健康和死亡率,同时获得QT间隔和其他生理信号(例如,RR间隔)的时间序列,并且针对相同时间间隔的每个信号计算熵值。 “entopyx”是根据Qt间隔的矩和熵之间的相对变化和其他生理信号超过几秒钟的相对变化计算。未来时间点的特定时间点和/或后续变化的绝对和相对熵值可用于确定对象的治疗计划。

著录项

  • 公开/公告号US2021251552A1

    专利类型

  • 公开/公告日2021-08-19

    原文格式PDF

  • 申请/专利权人 THE JOHNS HOPKINS UNIVERSITY;

    申请/专利号US202117233208

  • 发明设计人 DEEPTANKAR DEMAZUMDER;GORDON TOMASELLI;

    申请日2021-04-16

  • 分类号A61B5/364;A61B5/316;A61B5/349;A61B5/352;A61B5/369;A61B5;A61B5/0205;

  • 国家 US

  • 入库时间 2022-08-24 20:42:12

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