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Cathodal stimulation in the recovery phase of a propagating planar wave in the rabbit heart reveals four stimulation mechanisms

机译:兔子心脏中传播的平面波恢复阶段的阴极刺激揭示了四种刺激机制

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摘要

The stimulation of cardiac tissue in the recovery phase has significant importance in relation to reentry induction. In the theoretical experiment proposed by Winfree, termed the ‘pinwheel' experiment, a point stimulus (S2) is applied in the wake of a freely propagating planar wave (S1). Reentry induced from this S1–S2 pinwheel protocol has been observed experimentally in heart preparations. However, in these experiments, which focused on activation outcomes, only mapping of extracellular voltages has been conducted. The lack of transmembrane potential (Vm) distribution data makes it impossible to analyse the underlying stimulation mechanisms which precede the reentry induction. In this work we sought to elucidate the stimulation mechanisms throughout the heart cycle using the pinwheel protocol. We examined the cardiac tissue responses during and immediately after cathodal stimulation in the refractory wake of a propagating planar wave. The voltage-sensitive dye di-4-ANEPPS was utilized to measure Vm directly from quasi two-dimensional preparations of cryoablated Langendorff-perfused rabbit hearts. Four stimulation mechanisms were observed that depended on the Vm magnitude during S2 cathodal stimulation. Make stimulation always occurred during diastolic stimulation. When stimulation was at the beginning of the relative refractory period (RRP), transitional make–break stimulation was detected. During the RRP the excitation was due to the break mechanism. While approaching the effective refractory period (ERP), the tissue response is characterized by a damped wave mediated response. These four stimulation mechanisms were observed in all hearts whether the S1 planar wave propagation was parallel or perpendicular to the fibre direction. This study is the first examination of Vm and the stimulation mechanisms throughout the cardiac cycle using the pinwheel protocol, and the results have implications in the development and improvement of pacing protocols for artificial cardiostimulators.
机译:在恢复阶段对心脏组织的刺激与折返诱导有关具有重要意义。在Winfree提出的理论实验(称为“风车”实验)中,在自由传播的平面波(S1)之后应用了点刺激(S2)。在心脏准备过程中,已经通过实验观察到了从这种S1-S2风车协议引起的折返。但是,在这些针对激活结果的实验​​中,仅进行了细胞外电压的作图。缺乏跨膜电位(Vm)分布数据使得无法分析再入诱导之前的潜在刺激机制。在这项工作中,我们试图使用风车协议阐明整个心动周期的刺激机制。我们在传播平面波的难治性唤醒中,在阴极刺激期间和之后检查了心脏组织的反应。压敏染料di-4-ANEPPS用于直接从冷冻消融的Langendorff灌注兔心脏的准二维制剂中测量Vm。观察到四种刺激机制,取决于S2阴极刺激过程中的Vm大小。使刺激总是在舒张期刺激期间发生。当刺激是在相对不应期(RRP)的开始时,就可以检测到过渡性的失控刺激。在RRP期间,激发是由于断裂机理引起的。当接近有效不应期(ERP)时,组织反应的特征是阻尼波介导的反应。无论S1平面波传播是平行还是垂直于纤维方向,在所有心脏中都可以观察到这四种刺激机制。这项研究是使用风车协议对整个心动周期中的Vm和刺激机制进行的首次检查,其结果对人工心脏刺激器起搏协议的发展和改进具有影响。

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