Home LiteratureArticle Details
PMID: 11514476 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Architecture of the pulmonary veins: relevance to radiofrequency ablation.

Heart (British Cardiac Society) ·Vol. 86 ·No. 3 ·2001-09-00 ·Pages 265-70

Ho SY, Cabrera JA, Tran VH, Farré J, Anderson RH, Sánchez-Quintana D

Abstract

Radiofrequency ablation of tissues in pulmonary veins can eliminate paroxysmal atrial fibrillation. To explore the characteristics of normal pulmonary veins so as to provide more information relevant to radiofrequency ablation. 20 structurally normal heart specimens were examined grossly. Histological sections were made from 65 pulmonary veins. The longest myocardial sleeves were found in the superior veins. The sleeves were thickest at the venoatrial junction in the left superior pulmonary veins. For the superior veins, the sleeves were thickest along the inferior walls and thinnest superiorly. The sleeves were composed mainly of circularly or spirally oriented bundles of myocytes with additional bundles that were longitudinally or obliquely oriented, sometimes forming mesh-like arrangements. Fibrotic changes estimated at between 5% and 70% across three transverse sections were seen in 17 veins that were from individuals aged 30 to 72 years. The myocardial architecture in normal pulmonary veins is highly variable. The complex arrangement, stretch, and increase in fibrosis may produce greater non-uniform anisotropic properties.

MeSH Terms
Adult Aged Aged, 80 and over Catheter Ablation Female Heart Atria/anatomy & histology Humans Male Middle Aged Muscle, Smooth, Vascular/cytology Pulmonary Veins/anatomy & histology,surgery
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Ho S Y
National Heart and Lung Institute, Imperial College, Royal Brompton and Harefield NHS Trust, Dovehouse Street, London SW3 6LY, UK. [email protected]
Cabrera J A
Tran V H
Farré J
Anderson R H
Sánchez-Quintana D
References (17)
17 references, click to expand
  1. Dependence of electrogram duration in right posteroseptal atrium and atrium-pulmonary vein junction on pacing site: mechanism and implications regarding atrioventricular nodal reentrant tachycardia and paroxysmal atrial fibrillation.
    J Cardiovasc Electrophysiol. 2000 May;11(5):506-15 PMID: 10826929
  2. Catheter ablation of chronic atrial fibrillation targeting the reinitiating triggers.
    J Cardiovasc Electrophysiol. 2000 Jan;11(1):2-10 PMID: 10695453
  3. The junction between the left atrium and the pulmonary veins. An anatomic study of human hearts.
    Circulation. 1966 Sep;34(3):412-22 PMID: 5922708
  4. Anatomy of the left atrium: implications for radiofrequency ablation of atrial fibrillation.
    J Cardiovasc Electrophysiol. 1999 Nov;10(11):1525-33 PMID: 10571372
  5. Atrial fibrillation: role of arrhythmogenic foci.
    J Interv Card Electrophysiol. 2000 Jan;4 Suppl 1:29-37 PMID: 10590486
  6. Pulmonary vein morphology in patients with paroxysmal atrial fibrillation initiated by ectopic beats originating from the pulmonary veins: implications for catheter ablation.
    Circulation. 2000 Mar 21;101(11):1274-81 PMID: 10725287
  7. Prevalence and significance of exit block during arrhythmias arising in pulmonary veins.
    J Cardiovasc Electrophysiol. 2000 Apr;11(4):379-86 PMID: 10809490
  8. Myocardial atrio-venous junctions and extensions (sleeves) over the pulmonary and caval veins. Anatomical observations in various mammals.
    Thorax. 1970 May;25(3):317-24 PMID: 5452285
  9. Relating extracellular potentials and their derivatives to anisotropic propagation at a microscopic level in human cardiac muscle. Evidence for electrical uncoupling of side-to-side fiber connections with increasing age.
    Circ Res. 1986 Mar;58(3):356-71 PMID: 3719925
  10. Node-like cells in the myocardial layer of the pulmonary vein of rats: an ultrastructural study.
    J Anat. 1986 Apr;145:133-42 PMID: 3429299
  11. Unequal atrial stretch in dogs increases dispersion of refractoriness conducive to developing atrial fibrillation.
    J Cardiovasc Electrophysiol. 1996 Sep;7(9):833-42 PMID: 8884512
  12. A focal source of atrial fibrillation treated by discrete radiofrequency ablation.
    Circulation. 1997 Feb 4;95(3):572-6 PMID: 9024141
  13. Spontaneous initiation of atrial fibrillation by ectopic beats originating in the pulmonary veins.
    N Engl J Med. 1998 Sep 3;339(10):659-66 PMID: 9725923
  14. Pulmonary vein stenosis after catheter ablation of atrial fibrillation.
    Circulation. 1998 Oct 27;98(17):1769-75 PMID: 9788832
  15. Double multielectrode mapping catheters facilitate radiofrequency catheter ablation of focal atrial fibrillation originating from pulmonary veins.
    J Cardiovasc Electrophysiol. 1999 Feb;10(2):136-44 PMID: 10090216
  16. Functional anatomy and throttle valve action on the pulmonary veins.
    Am Heart J. 1954 Jan;47(1):58-66 PMID: 13114170
  17. Left atrial myocardial extension onto pulmonary veins in humans: anatomic observations relevant for atrial arrhythmias.
    J Cardiovasc Electrophysiol. 2000 Aug;11(8):888-94 PMID: 10969751
Article Info
Journal
Heart (British Cardiac Society)
Abbr.
Heart
ISSN
1468-201X
Published
2001-09-00
Pages
265-70
Language
English
Region
England
NLM ID
9602087
PMCID
PMC1729909
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]