Bishop Martin J, Rodriguez Blanca, Qu Fujian, Efimov Igor R, Gavaghan David J, Trayanova Natalia A
Oxford University Computing Laboratory, Oxford OX1 3QD, United Kingdom.
Biophys J. 2007 Nov 15;93(10):3714-26. doi: 10.1529/biophysj.107.110981.
Optical mapping of arrhythmias and defibrillation provides important insights; however, a limitation of the technique is signal distortion due to photon scattering. The goal of this experimental/simulation study is to investigate the role of three-dimensional photon scattering in optical signal distortion during ventricular tachycardia (VT) and defibrillation. A three-dimensional realistic bidomain rabbit ventricular model was combined with a model of photon transport. Shocks were applied via external electrodes to induce sustained VT, and transmembrane potentials (V(m)) were compared with synthesized optical signals (V(opt)). Fluorescent recordings were conducted in isolated rabbit hearts to validate simulation results. Results demonstrate that shock-induced membrane polarization magnitude is smaller in V(opt) and in experimental signals as compared to V(m). This is due to transduction of potentials from weakly polarized midmyocardium to the epicardium. During shock-induced reentry and in sustained VT, photon scattering, combined with complex wavefront dynamics, results in optical action potentials near a filament exhibiting i), elevated resting potential, ii), reduced amplitude relative to pacing, and iii), dual-humped morphologies. A shift of up to 4 mm in the phase singularity location was observed in V(opt) maps when compared to V(m). This combined experimental/simulation study provides an interpretation of optical recordings during VT and defibrillation.
心律失常和除颤的光学映射提供了重要的见解;然而,该技术的一个局限性是由于光子散射导致的信号失真。本实验/模拟研究的目的是研究三维光子散射在室性心动过速(VT)和除颤期间光学信号失真中的作用。将三维真实双域兔心室模型与光子传输模型相结合。通过外部电极施加电击以诱发持续性VT,并将跨膜电位(V(m))与合成光学信号(V(opt))进行比较。在离体兔心脏中进行荧光记录以验证模拟结果。结果表明,与V(m)相比,V(opt)和实验信号中电击诱发的膜极化幅度较小。这是由于电位从弱极化的心肌中层传导至心外膜。在电击诱发的折返和持续性VT期间,光子散射与复杂的波前动力学相结合,导致细丝附近的光学动作电位呈现出以下特征:i)静息电位升高,ii)相对于起搏的幅度降低,以及iii)双峰形态。与V(m)图相比,在V(opt)图中观察到相位奇点位置最多偏移4毫米。这项结合实验/模拟的研究对VT和除颤期间的光学记录进行了解释。