Literature DB >> 11980690

Anisotropic conduction properties in canine atria analyzed by high-resolution optical mapping: preferential direction of conduction block changes from longitudinal to transverse with increasing age.

Takahiro Koura1, Motoki Hara, Susumu Takeuchi, Kenichi Ota, Yasumasa Okada, Shunichiro Miyoshi, Atsushi Watanabe, Kazumi Shiraiwa, Hideo Mitamura, Itsuo Kodama, Satoshi Ogawa.   

Abstract

BACKGROUND: Anisotropic conduction properties may provide a substrate for reentrant arrhythmias. We investigated the age-dependent changes of structural and functional anisotropy in isolated right atria from infant (1 to 2 months), young (6 to 12 months), and old (6 to 10 years) dogs. METHODS AND
RESULTS: The histology of the mapped atrial tissues (a small subepicardial area, 2.8x4.2 mm) was characterized by an age-dependent increase of myofiber width and fat cell infiltration between myofibers. Cx43 was distributed homogeneously over the entire cell surface in infant dogs, whereas it progressively polarized to the cell termini with increasing age. The activation sequences were analyzed by high-resolution optical mapping using a voltage-sensitive dye. Activation fronts from the pacing site proceeded more rapidly along fiber orientation (longitudinal) than across it (transverse). Infant dogs showed "elliptical" isochrones with a smooth transition between longitudinal and transverse propagation, whereas old dogs had a "square" pattern with a sharp transition. Conduction block occurred predominantly during longitudinal propagation in infant dogs but during transverse propagation in old dogs. The shape of the wave front and the degree of lateral uncoupling seemed to decide the preferential direction of block. A zigzag activation causing an extremely slow transverse conduction was observed only in old dogs.
CONCLUSIONS: Along with the age-dependent structural anisotropy, the preferential direction of block changed from longitudinal to transverse in association with a change in the wave front configuration. A zigzag propagation based on lateral uncoupling would predispose the elderly to multiple reentry and a higher incidence of atrial fibrillation.

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Year:  2002        PMID: 11980690     DOI: 10.1161/01.cir.0000015506.36371.0d

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  34 in total

1.  Electromechanical and structural alterations in the aging rabbit heart and aorta.

Authors:  Leroy L Cooper; Katja E Odening; Min-Sig Hwang; Leonard Chaves; Lorraine Schofield; Chantel A Taylor; Anthony S Gemignani; Gary F Mitchell; John R Forder; Bum-Rak Choi; Gideon Koren
Journal:  Am J Physiol Heart Circ Physiol       Date:  2012-02-03       Impact factor: 4.733

2.  Anisotropic conduction block and reentry in neonatal rat ventricular myocyte monolayers.

Authors:  Carlos de Diego; Fuhua Chen; Yuanfang Xie; Rakesh K Pai; Leonid Slavin; John Parker; Scott T Lamp; Zhilin Qu; James N Weiss; Miguel Valderrábano
Journal:  Am J Physiol Heart Circ Physiol       Date:  2010-10-29       Impact factor: 4.733

Review 3.  Influence of anisotropic conduction properties in the propagation of the cardiac action potential.

Authors:  Miguel Valderrábano
Journal:  Prog Biophys Mol Biol       Date:  2007-03-24       Impact factor: 3.667

4.  Inhomogeneous distribution of action potential characteristics in the rabbit sino-atrial node revealed by voltage imaging.

Authors:  Haruko Masumiya; Yoshitaka Oku; Yasumasa Okada
Journal:  J Physiol Sci       Date:  2009-03-19       Impact factor: 2.781

5.  Novel micropatterned cardiac cell cultures with realistic ventricular microstructure.

Authors:  Nima Badie; Nenad Bursac
Journal:  Biophys J       Date:  2009-05-06       Impact factor: 4.033

6.  Mechanism of origin of conduction disturbances in aging human atrial bundles: experimental and model study.

Authors:  Madison S Spach; J Francis Heidlage; Paul C Dolber; Roger C Barr
Journal:  Heart Rhythm       Date:  2006-11-01       Impact factor: 6.343

7.  Circulating fibrosis biomarkers and risk of atrial fibrillation: The Cardiovascular Health Study (CHS).

Authors:  Michael A Rosenberg; Marlena Maziarz; Alex Y Tan; Nicole L Glazer; Susan J Zieman; Jorge R Kizer; Joachim H Ix; Luc Djousse; David S Siscovick; Susan R Heckbert; Kenneth J Mukamal
Journal:  Am Heart J       Date:  2014-02-26       Impact factor: 4.749

8.  Simulation of biatrial conduction via different pathways during sinus rhythm with a detailed human atrial model.

Authors:  Dong-dong Deng; Ying-lan Gong; Guo-fa Shou; Pei-feng Jiao; Heng-gui Zhang; Xue-song Ye; Ling Xia
Journal:  J Zhejiang Univ Sci B       Date:  2012-09       Impact factor: 3.066

9.  Genetic engineering of somatic cells to study and improve cardiac function.

Authors:  Robert D Kirkton; Nenad Bursac
Journal:  Europace       Date:  2012-11       Impact factor: 5.214

Review 10.  Aged atria: electrical remodeling conducive to atrial fibrillation.

Authors:  Wen Dun; Penelope A Boyden
Journal:  J Interv Card Electrophysiol       Date:  2009-03-12       Impact factor: 1.900

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