Steyer Joshua, Lilienkamp Thomas, Luther Stefan, Parlitz Ulrich
Max Planck Institute for Dynamics and Self-Organization, Göttingen, Germany.
Institute for the Dynamics of Complex Systems, Georg-August-Universität Göttingen, Göttingen, Germany.
Front Netw Physiol. 2023 Jan 4;2:1007585. doi: 10.3389/fnetp.2022.1007585. eCollection 2022.
Life-threatening cardiac arrhythmias require immediate defibrillation. For state-of-the-art shock treatments, a high field strength is required to achieve a sufficient success rate for terminating the complex spiral wave (rotor) dynamics underlying cardiac fibrillation. However, such high energy shocks have many adverse side effects due to the large electric currents applied. In this study, we show, using 2D simulations based on the Fenton-Karma model, that also pulses of relatively low energy may terminate the chaotic activity if applied at the right moment in time. In our simplified model for defibrillation, complex spiral waves are terminated by local perturbations corresponding to conductance heterogeneities acting as virtual electrodes in the presence of an external electric field. We demonstrate that time series of the success rate for low energy shocks exhibit pronounced peaks which correspond to short intervals in time during which perturbations aiming at terminating the chaotic fibrillation state are (much) more successful. Thus, the low energy shock regime, although yielding very low temporal average success rates, exhibits moments in time for which success rates are significantly higher than the average value shown in dose-response curves. This feature might be exploited in future defibrillation protocols for achieving high termination success rates with low or medium pulse energies.
危及生命的心律失常需要立即进行除颤。对于最先进的电击治疗,需要高场强才能获得足够的成功率,以终止导致心脏颤动的复杂螺旋波(转子)动力学。然而,由于施加的电流较大,这种高能量电击有许多不良副作用。在本研究中,我们基于芬顿 - 卡玛模型进行二维模拟表明,如果在正确的时刻施加相对低能量的脉冲,也可能终止混沌活动。在我们简化的除颤模型中,复杂螺旋波通过局部扰动来终止,这些扰动对应于在外部电场存在下作为虚拟电极的电导不均匀性。我们证明,低能量电击成功率的时间序列呈现出明显的峰值,这些峰值对应于短时间间隔,在此期间旨在终止混沌颤动状态的扰动(更)成功。因此,低能量电击方案虽然产生的时间平均成功率非常低,但在某些时刻成功率明显高于剂量 - 反应曲线所示的平均值。这一特性可能在未来的除颤方案中得到利用,以实现低或中等脉冲能量下的高终止成功率。