Literature DB >> 9815055

Ventricular contractility in atrial fibrillation is predictable by mechanical restitution and potentiation.

S Suzuki1, J Araki, T Morita, S Mohri, T Mikane, H Yamaguchi, S Sano, T Ohe, M Hirakawa, H Suga.   

Abstract

We recently found that contractility (Emax) of an individual irregularly arrhythmic beat in electrically induced atrial fibrillation (AF) is reasonably predictable from the ratio of the preceding beat interval (RR1) to the beat interval immediately preceding RR1 (RR2) in the canine left ventricle. Moreover, the monotonically increasing relation between Emax and the RR1-to-RR2 ratio (RR1/RR2) passed through or by the mean arrhythmic beat Emax as well as the regular beat Emax at RR1/RR2 = 1. We hypothesized that this Emax-RR1/RR2 relation during irregular arrhythmia could be attributed to the basic characteristics of the mechanical restitution and potentiation. To test this, we adopted a known comprehensive equation describing the force restitution and potentiation as a function of two preceding beat intervals and simulated contractilities of irregular arrhythmic beats with randomized beat intervals on a computer. The simulated Emax-RR1/RR2 relation reasonably resembled the one that we recently observed experimentally, supporting our hypothesis. We therefore conclude that the primary mechanism underlying the varying contractilities of irregular beats in AF is mechanical restitution and potentiation.

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Year:  1998        PMID: 9815055     DOI: 10.1152/ajpheart.1998.275.5.H1513

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  8 in total

1.  Myocardial mechanical restitution and potentiation partly underlie alternans decay of postextrasystolic potentiation: simulation.

Authors:  S Mohri; J Araki; T Imaoka; G Iribe; M Maesako; J Shimizu; H Matsubara; T Ohe; M Hirakawa; H Suga
Journal:  Heart Vessels       Date:  1999       Impact factor: 2.037

2.  Single-beat determination of global longitudinal speckle strain in patients with atrial fibrillation.

Authors:  Kazuto Yamaguchi; Hiroyuki Yoshitomi; Saki Ito; Tomoko Adachi; Nobuyuki Takahashi; Kazuaki Tanabe
Journal:  J Echocardiogr       Date:  2012-07-26

3.  Calcium equally increases the internal calcium recirculation fraction before and after beta-blockade in canine left ventricles.

Authors:  S Hosogi; J Araki; Y Syuu; S Suzuki; S Mohri; T Mikane; H Matsubara; T Ohe; M Hirakawa; H Suga
Journal:  Heart Vessels       Date:  1997       Impact factor: 2.037

4.  Total Ca handling in canine mild Ca overload failing heart.

Authors:  J Mizuno; J Araki; G Iribe; M Maesako; T Morita; K Miyaji; T Imaoka; S Mohri; S Sano; T Ohe; M Hirakawa; H Suga
Journal:  Heart Vessels       Date:  1999       Impact factor: 2.037

5.  Preload-adjusted maximal power: a novel index of left ventricular contractility in atrial fibrillation.

Authors:  M Takagaki; P M McCarthy; M Chung; J Connor; R Dessoffy; Y Ochiai; M Howard; K Doi; M Kopcak; T N Mazgalev; K Fukamachi
Journal:  Heart       Date:  2002-08       Impact factor: 5.994

6.  Quantification of Left Ventricular Function With Premature Ventricular Complexes Reveals Variable Hemodynamics.

Authors:  Francisco Contijoch; Kelly Rogers; Hannah Rears; Mohammed Shahid; Peter Kellman; Joseph Gorman; Robert C Gorman; Paul Yushkevich; Erica S Zado; Gregory E Supple; Francis E Marchlinski; Walter R T Witschey; Yuchi Han
Journal:  Circ Arrhythm Electrophysiol       Date:  2016-04

7.  Single beat determination of intraventricular systolic dyssynchrony in patients with atrial fibrillation and systolic dysfunction.

Authors:  Anita Sadeghpour; Alireza Hoghooghi; Zahra Alizadehsani; Mohsen Rezaei; Sevil Aghapour; Majid Haghjoo
Journal:  Res Cardiovasc Med       Date:  2013-05-20

8.  Left Atrial Size and Function in a Canine Model of Chronic Atrial Fibrillation and Heart Failure.

Authors:  Adam Goldberg; Kenya Kusunose; Salima Qamruddin; L Leonardo Rodriguez; Todor N Mazgalev; Brian P Griffin; David R Van Wagoner; Youhua Zhang; Zoran B Popović
Journal:  PLoS One       Date:  2016-01-15       Impact factor: 3.240

  8 in total

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