Literature DB >> 4028346

Reentrant ventricular arrhythmias in the late myocardial infarction period in the dog. 13. Correlation of activation and refractory maps.

W B Gough, R Mehra, M Restivo, R H Zeiler, N el-Sherif.   

Abstract

Isochronal maps of ventricular activation were analyzed in dogs 3-5 days after ligation of the left anterior descending coronary artery utilizing a 64-channel multiplexer. Isochronal maps of the effective refractory period were determined from 62 epicardial sites and correlated with the activation maps. The ischemia occurring in the surviving epicardial layer prolonged refractoriness in a spatially nonuniform manner. The resulting pattern of refractoriness on the epicardial surface resembled concentric rings of isorefractoriness which increased in duration from the normal zone to the center of the ischemic zone. The formation of an arc of functional unidirectional conduction block occurred along the gradient of refractoriness and the exact location of the arc depended on the S1-S2 interval. When a short S1-S2 failed to induce reentry, fewer adjacent sites with sufficiently disparate refractoriness formed a smaller arc of block. A subsequent S3 encountered further nonuniformly shortened refractoriness (normal areas had shortened refractoriness greater than ischemic areas) and the arc of block was lengthened. This required a longer time for the wavefront to circulate around the arc. When it then reached the distal side of the arc, refractoriness had expired proximal to the arc and reentry occurred. Similarly, nonuniform shortening of refractoriness explained why one reentrant beat may or may not produce successive reentrant beats. Therefore, the spatial pattern of refractoriness forms the substrate for the arc of unidirectional conduction block that is fundamental to the development of ventricular reentry in this experimental model.

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Year:  1985        PMID: 4028346     DOI: 10.1161/01.res.57.3.432

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  35 in total

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5.  Remodelling of action potential and intracellular calcium cycling dynamics during subacute myocardial infarction promotes ventricular arrhythmias in Langendorff-perfused rabbit hearts.

Authors:  Chung-Chuan Chou; Shengmei Zhou; Hideki Hayashi; Motoki Nihei; Yen-Bin Liu; Ming-Shien Wen; San-Jou Yeh; Michael C Fishbein; James N Weiss; Shien-Fong Lin; Delon Wu; Peng-Sheng Chen
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6.  Characterization of gap junction remodeling in epicardial border zone of healing canine infarcts and electrophysiological effects of partial reversal by rotigaptide.

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Review 7.  The role of the autonomic nervous system in sudden cardiac death.

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8.  Electrophysiologic mechanisms of ventricular arrhythmias.

Authors:  N el-Sherif
Journal:  Int J Card Imaging       Date:  1991

Review 9.  Pathophysiology of ventricular tachyarrhythmias : From automaticity to reentry.

Authors:  Andres Enriquez; David S Frankel; Adrian Baranchuk
Journal:  Herzschrittmacherther Elektrophysiol       Date:  2017-05-31

10.  Resiniferatoxin reduces cardiac sympathetic nerve activation to exert a cardioprotective effect during myocardial infarction.

Authors:  Ludefu Su; Yu Liu; Yanhong Tang; Mingmin Zhou; Liang Xiong; Congxin Huang
Journal:  Int J Clin Exp Pathol       Date:  2021-04-15
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