Literature DB >> 9366563

Spatiotemporal complexity of ventricular fibrillation revealed by tissue mass reduction in isolated swine right ventricle. Further evidence for the quasiperiodic route to chaos hypothesis.

Y H Kim1, A Garfinkel, T Ikeda, T J Wu, C A Athill, J N Weiss, H S Karagueuzian, P S Chen.   

Abstract

We have presented evidence that ventricular fibrillation is deterministic chaos arising from quasiperiodicity. The purpose of this study was to determine whether the transition from chaos (ventricular fibrillation, VF) to periodicity (ventricular tachycardia) through quasiperiodicity could be produced by the progressive reduction of tissue mass. In isolated and perfused swine right ventricular free wall, recording of single cell transmembrane potentials and simultaneous mapping (477 bipolar electrodes, 1.6 mm resolution) were performed. The tissue mass was then progressively reduced by sequential cutting. All isolated tissues fibrillated spontaneously. The critical mass to sustain VF was 19.9 +/- 4.2 g. As tissue mass was decreased, the number of wave fronts decreased, the life-span of reentrant wave fronts increased, and the cycle length, the diastolic interval, and the duration of action potential lengthened. There was a parallel decrease in the dynamical complexity of VF as measured by Kolmogorov entropy and Poincaré plots. A period of quasiperiodicity became more evident before the conversion from VF (chaos) to a more regular arrhythmia (periodicity). In conclusion, a decrease in the number of wave fronts in ventricular fibrillation by tissue mass reduction causes a transition from chaotic to periodic dynamics via the quasiperiodic route.

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Year:  1997        PMID: 9366563      PMCID: PMC508449          DOI: 10.1172/JCI119791

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  21 in total

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4.  Electrophysiologic effects of surgical isolation of the right ventricle.

Authors:  R J Damiano; T Asano; P K Smith; T B Ferguson; J M Douglas; J L Cox
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5.  Is fibrillation chaos?

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Journal:  Circ Res       Date:  1990-10       Impact factor: 17.367

6.  Quasiperiodicity and chaos in cardiac fibrillation.

Authors:  A Garfinkel; P S Chen; D O Walter; H S Karagueuzian; B Kogan; S J Evans; M Karpoukhin; C Hwang; T Uchida; M Gotoh; O Nwasokwa; P Sager; J N Weiss
Journal:  J Clin Invest       Date:  1997-01-15       Impact factor: 14.808

7.  Interaction between strong electrical stimulation and reentrant wavefronts in canine ventricular fibrillation.

Authors:  C Bonometti; C Hwang; D Hough; J J Lee; M C Fishbein; H S Karagueuzian; P S Chen
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8.  Cellular mechanisms of differential action potential duration restitution in canine ventricular muscle cells during single versus double premature stimuli.

Authors:  Y Kobayashi; W Peters; S S Khan; W J Mandel; H S Karagueuzian
Journal:  Circulation       Date:  1992-09       Impact factor: 29.690

9.  The mechanism of termination of reentrant activity in ventricular fibrillation.

Authors:  Y M Cha; U Birgersdotter-Green; P L Wolf; B B Peters; P S Chen
Journal:  Circ Res       Date:  1994-03       Impact factor: 17.367

10.  Proarrhythmic response to potassium channel blockade. Numerical studies of polymorphic tachyarrhythmias.

Authors:  C F Starmer; D N Romashko; R S Reddy; Y I Zilberter; J Starobin; A O Grant; V I Krinsky
Journal:  Circulation       Date:  1995-08-01       Impact factor: 29.690

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  24 in total

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4.  Calcium instabilities in mammalian cardiomyocyte networks.

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5.  Nonlinear-dynamical arrhythmia control in humans.

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6.  Intracellular calcium dynamics at the core of endocardial stationary spiral waves in Langendorff-perfused rabbit hearts.

Authors:  Liang Tang; Gyo-Seung Hwang; Hideki Hayashi; Juan Song; Masahiro Ogawa; Kenzaburo Kobayashi; Boyoung Joung; Hrayr S Karagueuzian; Peng-Sheng Chen; Shien-Fong Lin
Journal:  Am J Physiol Heart Circ Physiol       Date:  2008-05-16       Impact factor: 4.733

7.  Nonlinear and Stochastic Dynamics in the Heart.

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8.  Increased thin filament activation enhances alternans in human chronic atrial fibrillation.

Authors:  Melanie A Zile; Natalia A Trayanova
Journal:  Am J Physiol Heart Circ Physiol       Date:  2018-08-24       Impact factor: 4.733

9.  Apamin-sensitive potassium current modulates action potential duration restitution and arrhythmogenesis of failing rabbit ventricles.

Authors:  Yu-Cheng Hsieh; Po-Cheng Chang; Chia-Hsiang Hsueh; Young Soo Lee; Changyu Shen; James N Weiss; Zhenhui Chen; Tomohiko Ai; Shien-Fong Lin; Peng-Sheng Chen
Journal:  Circ Arrhythm Electrophysiol       Date:  2013-02-18

10.  Increased susceptibility of aged hearts to ventricular fibrillation during oxidative stress.

Authors:  Norishige Morita; Ali A Sovari; Yuanfang Xie; Michael C Fishbein; William J Mandel; Alan Garfinkel; Shien-Fong Lin; Peng-Sheng Chen; Lai-Hua Xie; Fuhua Chen; Zhilin Qu; James N Weiss; Hrayr S Karagueuzian
Journal:  Am J Physiol Heart Circ Physiol       Date:  2009-09-18       Impact factor: 4.733

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