Laboratory of Physics, Tampere University of Technology, P.O. Box 692, FI-33101, Tampere, Finland.
FirstBeat Technologies Ltd, Yliopistonkatu 28a, Jyväskylä, 40100, Finland.
Sci Rep. 2018 Oct 9;8(1):14992. doi: 10.1038/s41598-018-33359-1.
The relation between the electrical properties of the heart and the beating rate is essential for the heart functioning. This relation is central when calculating the "corrected QT interval" - an important measure of the risk of potentially lethal arrhythmias. We use the transfer entropy method from information theory to quantitatively study the mutual dynamics of the ventricular action potential duration (the QT interval) and the length of the beat-to-beat (RR) interval. We show that for healthy individuals there is a strong asymmetry in the information transfer: the information flow from RR to QT dominates over the opposite flow (from QT to RR), i.e. QT depends on RR to a larger extent than RR on QT. Moreover, the history of the intervals has a strong effect on the information transfer: at sufficiently long QT history length the information flow asymmetry inverts and the RR influence on QT dynamics weakens. Finally, we demonstrate that the widely used QT correction methods cannot properly capture the changes in the information flows between QT and RR. We conclude that our results obtained through a model-free informational perspective can be utilised to improve and test the QT correction schemes in clinics.
心脏的电特性与心率之间的关系对心脏功能至关重要。在计算“校正 QT 间期”时,这一关系至关重要,因为校正 QT 间期是衡量潜在致命性心律失常风险的重要指标。我们使用信息论中的传递熵方法,从定量的角度研究了心室动作电位持续时间(QT 间期)和心跳(RR 间期)之间的相互动力学关系。我们发现,对于健康个体,信息传递存在很强的不对称性:RR 到 QT 的信息流占主导地位,而相反的流向(从 QT 到 RR)则较弱,也就是说,QT 对 RR 的依赖性比 RR 对 QT 的依赖性更强。此外,间隔的历史对信息传递有很强的影响:在 QT 历史长度足够长的情况下,信息流的不对称性会反转,RR 对 QT 动力学的影响会减弱。最后,我们证明,广泛使用的 QT 校正方法无法正确捕捉 QT 和 RR 之间信息流的变化。我们得出的结论是,我们通过无模型信息论的视角获得的结果,可以用于改进和测试临床中的 QT 校正方案。