- Author:
Il Young OH
1
;
Myung Jin CHA
;
Tae Hui LEE
;
Jeong Wook SEO
;
Seil OH
Author Information
- Publication Type:Review
- Keywords: Heart conduction system; Purkinje fibers; Tachycardia, ventricular; Myocardial infarction
- MeSH: Arrhythmias, Cardiac; Atrioventricular Node; Bundle of His; Connective Tissue; Heart; Heart Conduction System; Humans; Myocardial Infarction; Myocardium; Papillary Muscles; Purkinje Cells; Purkinje Fibers; Tachycardia, Ventricular
- From:Korean Circulation Journal 2018;48(12):1081-1096
- CountryRepublic of Korea
- Language:English
- Abstract: We reviewed the anatomical characteristics of the conduction system in the ventricles of human and ungulate hearts and then raised some questions to be answered by clinical and anatomical studies in the future. The ventricular conduction system is a 3-dimensional structure as compared to the 2-dimensional character of the atrial conduction system. The proximal part consisting of the atrioventricular node, the bundle of His and fascicles are groups of conducting cells surrounded by fibrous connective tissue so as to insulate from the underlying myocardium. Their location and morphological characters are well established. The bundle of His is a cord like structure but the left and right fascicles are broad at the proximal and branching at the distal part. The more distal part of fascicles and Purkinje system are linear networks of conducting cells at the immediate subendocardium but the intra-mural network is detected at the inner half of the ventricular wall. The papillary muscle also harbors Purkinje system not in the deeper part. It is hard to recognize histologically in human hearts but conducting cells as well as Purkinje cells are easily recognized in ungulate hearts. Further observation on human and ungulate hearts with myocardial infarct, we could find preserved Purkinje system at the subendocardium in contrast to the damaged system at the deeper myocardium. Further studies are necessary on the anatomical characteristics of this peripheral conduction system so as to correlate the clinical data on hearts with ventricular arrhythmias.