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Method for generating an artificial RR tachogram of a typical healthy human over 24-hours

机译:在24小时内产生典型健康人工人工RR TR TR的方法

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An algorithm that generates realistic synthetic 24hour RR-tachograms by including both cardiovascular interactions and transitions between physiological states is presented. Fluctuations in the beat to beat RR-intervals of a normal healthy human over 24 hours are known to exhibit variability on a number of different time scales. Short range variability due to Mayer waves and RSA are incorporated using a power spectrum with given spectral characteristics described by its low and high frequency components. Longer range fluctuations arising from transitions between physiological states are generated using switching distributions extracted from real data. These physiological states, including sleep states, are specified using RR intervals with different means, variances and trends. This algorithm provides RR tachograms that are similar to those in the MIT-BIH Normal Sinus Rhythm Database. The resulting artificial RR times series generator was submitted for part 1 of the Physionet/Computers in Cardiology Challenge 2002 with entry number 201.
机译:提出了一种通过包括心血管相互作用和生理状态之间的过渡来产生现实合成24hour的算法。在24小时内,已知节拍中的波动击败正常健康人的正常健康人的间隔,以在许多不同的时间尺度上表现出可变性。使用具有由其低频和高频分量描述的给定光谱特性的功率谱来整合由于Mayer波和RSA引起的短范围变异性。使用从真实数据提取的切换分布产生从生理状态之间过渡产生的更长的范围波动。这些生理状态包括睡眠状态,使用具有不同手段,差异和趋势的RR间隔指定。该算法提供了类似于MIT-BIH普通窦律数据库中的RR Tachogk。由此产生的人造RR次系列发生器被提交,用于2002年心脏病学挑战2002中的物理仪/计算机的第1部分。

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