Research Group Biomedical Physics, Max Planck Institute for Dynamics and Self-Organisation, Göttingen 37077, Germany.
Institute of Pharmacology and Toxicology, University Medical Center Göttingen, Göttingen 37075, Germany.
Chaos. 2024 Mar 1;34(3). doi: 10.1063/5.0191519.
Malignant cardiac tachyarrhythmias are associated with complex spatiotemporal excitation of the heart. The termination of these life-threatening arrhythmias requires high-energy electrical shocks that have significant side effects, including tissue damage, excruciating pain, and worsening prognosis. This significant medical need has motivated the search for alternative approaches that mitigate the side effects, based on a comprehensive understanding of the nonlinear dynamics of the heart. Cardiac optogenetics enables the manipulation of cellular function using light, enhancing our understanding of nonlinear cardiac function and control. Here, we investigate the efficacy of optically resonant feedback pacing (ORFP) to terminate ventricular tachyarrhythmias using numerical simulations and experiments in transgenic Langendorff-perfused mouse hearts. We show that ORFP outperforms the termination efficacy of the optical single-pulse (OSP) approach. When using ORFP, the total energy required for arrhythmia termination, i.e., the energy summed over all pulses in the sequence, is 1 mJ. With a success rate of 50%, the energy per pulse is 40 times lower than with OSP with a pulse duration of 10 ms. We demonstrate that even at light intensities below the excitation threshold, ORFP enables the termination of arrhythmias by spatiotemporal modulation of excitability inducing spiral wave drift.
恶性心脏性心动过速与心脏的复杂时空兴奋有关。终止这些危及生命的心律失常需要高能量电冲击,这会产生显著的副作用,包括组织损伤、剧痛和预后恶化。这种重大的医疗需求促使人们基于对心脏非线性动力学的全面理解,寻找减轻副作用的替代方法。心脏光遗传学使我们能够用光来操纵细胞功能,从而增强我们对非线性心脏功能和控制的理解。在这里,我们通过数值模拟和在转基因 Langendorff 灌流鼠心中的实验研究了光学共振反馈起搏(ORFP)终止室性心动过速的效果。我们表明,ORFP 优于光学单脉冲(OSP)方法的终止效果。当使用 ORFP 时,终止心律失常所需的总能量,即序列中所有脉冲的能量总和,为 1 mJ。成功率为 50%时,每个脉冲的能量比 OSP 低 40 倍,OSP 的脉冲持续时间为 10 ms。我们证明,即使在低于兴奋阈值的光强度下,ORFP 也能够通过时空调制兴奋性来终止心律失常,从而诱导螺旋波漂移。