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颤动、除颤与心脏起搏之间的相关性。

Correlation among fibrillation, defibrillation, and cardiac pacing.

作者信息

Ideker R E, Zhou X, Knisley S B

机构信息

Department of Medicine, University of Alabama at Birmingham 35294-0019, USA.

出版信息

Pacing Clin Electrophysiol. 1995 Mar;18(3 Pt 2):512-25. doi: 10.1111/j.1540-8159.1995.tb02562.x.

Abstract

An electrical stimulus must create an electric field of approximately 1 V/cm in the extracellular space to stimulate myocardium during diastole. To initiate fibrillation by premature stimulation during the vulnerable period or to defibrillate, an extracellular electric field of approximately 6 V/cm is required, a value approximately six times greater than that necessary for diastolic pacing. Yet, the current strength of the pulse given to the stimulating electrode to initiate fibrillation or to defibrillate is much greater than six times the diastolic pacing threshold. The ventricular fibrillation threshold is typically 40 times greater than the diastolic pacing threshold expressed in terms of current. The defibrillation threshold in terms of current is typically thousands of times greater than the diastolic pacing threshold. The reason that these thresholds vary so much more in terms of stimulus current than in terms of extracellular potential gradient is that each of the three thresholds requires creation of the required potential gradient at different distances from the stimulating electrode. Pacing requires a potential gradient of approximately 1 V/cm only in a small liminal volume of tissue immediately adjacent to the electrode. Initiation of ventricular fibrillation by premature stimulation during the vulnerable period requires a potential gradient of approximately 6 V/cm about 1 cm away from the stimulating electrode to allow sufficient space for the central common pathway of a figure-eight reentrant circuit to form. Since the potential gradient falls off rapidly with distance from the stimulating electrode, a stimulating current about 40 times greater than the diastolic pacing threshold is required to generate an electric field of 6 V/cm approximately 1 cm away from the stimulating electrode. Defibrillation requires an electric field of approximately 6 V/cm throughout all or almost all of the ventricular myocardium. Since some portions of the ventricles can be more than 10 cm away from the defibrillation electrodes, a shock of several amps is required to create this field, a current thousands of times greater than the pacing threshold.

摘要

在舒张期,电刺激必须在细胞外空间产生约1V/cm的电场才能刺激心肌。在易损期通过过早刺激引发颤动或进行除颤时,需要约6V/cm的细胞外电场,该值约为舒张期起搏所需电场的六倍。然而,施加到刺激电极以引发颤动或进行除颤的脉冲电流强度远大于舒张期起搏阈值的六倍。以电流表示时,室颤阈值通常比舒张期起搏阈值大40倍。以电流表示的除颤阈值通常比舒张期起搏阈值大数千倍。这些阈值在刺激电流方面的变化比在细胞外电位梯度方面的变化大得多的原因是,这三个阈值中的每一个都需要在距刺激电极不同距离处产生所需的电位梯度。起搏仅需要在紧邻电极的一小部分临界组织体积中产生约1V/cm的电位梯度。在易损期通过过早刺激引发室颤需要在距刺激电极约1cm处产生约6V/cm的电位梯度,以便为8字形折返环路的中央共同通路形成留出足够空间。由于电位梯度随距刺激电极距离的增加而迅速下降,因此需要比舒张期起搏阈值大40倍左右的刺激电流才能在距刺激电极约1cm处产生6V/cm的电场。除颤需要在整个或几乎整个心室心肌中产生约6V/cm的电场。由于心室的某些部分距除颤电极可能超过10cm,因此需要几安培的电击才能产生此电场,该电流比起搏阈值大数千倍。

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