Kanu Uche, Iravanian Shahriar, Gilmour Robert F, Christini David J
Department of Biomedical Engineering, Cornell University, Ithaca, NY, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:1997-2000. doi: 10.1109/IEMBS.2010.5627828.
Cardiac action potential duration alternans is characterized by a beat-to-beat alternation in action potential waveform. Its presence has been putatively linked to the onset of lethal cardiac arrhythmias. Previous studies, which have been limited to cardiac Purkinje fibers, have shown that closed-loop alternans control techniques, which apply a succession of externally administered cycle perturbations, provide ineffectual spatial alternans elimination. A more complete understanding of alternans control in the more clinically relevant ventricular tissue is needed. Here, we study the spatial dynamics of alternans and alternans control in arterially perfused canine right ventricular preparations using optical mapping. We quantified the spatial efficacy of alternans control across 2.5 cm of tissue, focusing primarily on differences in spatial control within several sub-regions of tissue. Our results provide a basis for future investigations into multi-electrode-based control interventions of alternans in cardiac tissue.
心脏动作电位时程交替的特征是动作电位波形逐搏交替。其存在被推测与致死性心律失常的发生有关。以往的研究仅限于心脏浦肯野纤维,结果表明,闭环交替控制技术(该技术应用一系列外部施加的周期扰动)无法有效消除空间交替。需要更全面地了解在临床相关性更高的心室组织中的交替控制。在此,我们使用光学标测技术研究了动脉灌注犬右心室标本中交替现象和交替控制的空间动力学。我们量化了2.5厘米组织范围内交替控制的空间效果,主要关注组织几个子区域内空间控制的差异。我们的结果为未来研究基于多电极的心脏组织交替控制干预措施提供了基础。