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心脏颤动期间的空间和时间组织。

Spatial and temporal organization during cardiac fibrillation.

作者信息

Gray R A, Pertsov A M, Jalife J

机构信息

Department of Pharmacology, SUNY Health Science Center, Syracuse, New York 13210, USA.

出版信息

Nature. 1998 Mar 5;392(6671):75-8. doi: 10.1038/32164.

Abstract

Cardiac fibrillation (spontaneous, asynchronous contractions of cardiac muscle fibres) is the leading cause of death in the industrialized world, yet it is not clear how it occurs. It has been debated whether or not fibrillation is a random phenomenon. There is some determinism during fibrillation, perhaps resulting from rotating waves of electrical activity. Here we present a new algorithm that markedly reduces the amount of data required to depict the complex spatiotemporal patterns of fibrillation. We use a potentiometric dye and video imaging to record the dynamics of transmembrane potentials at many sites during fibrillation. Transmembrane signals at each site exhibit a strong periodic component centred near 8 Hz. This periodicity is seen as an attractor in two-dimensional-phase space and each site can be represented by its phase around the attractor. Spatial phase maps at each instant reveal the 'sources' of fibrillation in the form of topological defects, or phase singularities, at a few sites. Using our method of identifying phase singularities, we can elucidate the mechanisms for the formation and termination of these singularities, and represent an episode of fibrillation by locating singularities. Our results indicate an unprecedented amount of temporal and spatial organization during cardiac fibrillation.

摘要

心脏颤动(心肌纤维的自发、异步收缩)是工业化国家的主要死因,但目前尚不清楚其发生机制。颤动是否为随机现象一直存在争议。颤动过程中存在一些确定性因素,可能源于电活动的旋转波。在此,我们提出一种新算法,可显著减少描绘颤动复杂时空模式所需的数据量。我们使用电位染料和视频成像技术记录颤动过程中多个位点的跨膜电位动态。每个位点的跨膜信号都呈现出一个以8Hz左右为中心的强周期成分。这种周期性在二维相空间中表现为一个吸引子,每个位点都可以用其在吸引子周围的相位来表示。每个时刻的空间相位图以拓扑缺陷或相位奇点的形式揭示了颤动的“源”,这些奇点位于少数几个位点。使用我们识别相位奇点的方法,我们可以阐明这些奇点的形成和终止机制,并通过定位奇点来表示一次颤动事件。我们的结果表明,心脏颤动过程中存在前所未有的时空组织。

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