Literature DB >> 18394452

Effect of mechanical dyssynchrony and cardiac resynchronization therapy on left ventricular rotational mechanics.

Leyla Elif Sade1, Ozlem Demir, Ilyas Atar, Haldun Müderrisoglu, Bülent Ozin.   

Abstract

Alterations in rotational mechanics can bring new aspects to the understanding of left ventricular (LV) dyssynchrony. The aims of this study were to investigate LV rotational mechanics in candidates for cardiac resynchronization therapy (CRT) and to assess the effect of CRT by speckle-tracking echocardiography. Fifty-four patients with heart failure and 33 healthy controls were studied. Thirty-three underwent CRT. Speckle tracking was applied to short- and long-axis views. Radial and longitudinal dyssynchrony were assessed as previously defined. Apical and basal rotations were measured as the average angular displacement about the LV central axis. LV twist and torsion were then calculated. Peak apical and basal rotation, peak LV twist and torsion, apical and basal rotation at aortic valve closure (AVC), and LV twist and torsion at AVC were significantly lower in patients than controls. Apical-basal rotation delay and AVC-to-peak LV twist interval were longer in patients and associated with decreased peak LV twist and LV twist at AVC, respectively. In patients, rotational indexes, particularly LV twist and torsion, were correlated strongly with radial dyssynchrony. LV torsion (cutoff 0.1 degrees /cm) and twist (cutoff 1 degrees ) at AVC had the highest sensitivity (90%) and specificity (77%) to predict CRT responders among all other parameters, including radial and longitudinal dyssynchrony. In conclusion, LV dyssynchrony is associated with discoordinate rotation of the apical and basal regions, which in turn significantly decreases peak LV twist and torsion and LV twist and torsion at AVC. CRT significantly restored the altered rotational mechanics in responders. These parameters have potential for predicting responders to CRT.

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Year:  2008        PMID: 18394452     DOI: 10.1016/j.amjcard.2007.11.069

Source DB:  PubMed          Journal:  Am J Cardiol        ISSN: 0002-9149            Impact factor:   2.778


  23 in total

1.  Oblique 3D MRI tags for the estimation of true 3D cardiac motion parameters.

Authors:  Yu Shimizu; Akira Amano; Tetsuya Matsuda
Journal:  Int J Cardiovasc Imaging       Date:  2010-06-08       Impact factor: 2.357

2.  Hemodynamic improvement in cardiac resynchronization does not require improvement in left ventricular rotation mechanics: three-dimensional tagged MRI analysis.

Authors:  Hiroshi Ashikaga; Christophe Leclercq; Jiangxia Wang; David A Kass; Elliot R McVeigh
Journal:  Circ Cardiovasc Imaging       Date:  2010-05-17       Impact factor: 7.792

3.  Method to create regional mechanical dyssynchrony maps from short-axis cine steady-state free-precession images.

Authors:  Jonathan D Suever; Brandon K Fornwalt; Lee R Neuman; Jana G Delfino; Michael S Lloyd; John N Oshinski
Journal:  J Magn Reson Imaging       Date:  2013-10-10       Impact factor: 4.813

4.  New insights in LV torsion for the selection of cardiac resynchronisation therapy candidates.

Authors:  I K Rüssel; M J W Götte
Journal:  Neth Heart J       Date:  2011-09       Impact factor: 2.380

5.  Feasibility of speckle-tracking echocardiography for assessment of left ventricular dysfunction after cardiopulmonary bypass.

Authors:  Alice Wang; Santos E Cabreriza; Bin Cheng; Jack S Shanewise; Henry M Spotnitz
Journal:  J Cardiothorac Vasc Anesth       Date:  2013-09-19       Impact factor: 2.628

Review 6.  Mechanical dyssynchrony and deformation imaging in patients with functional mitral regurgitation.

Authors:  Isabella Rosa; Claudia Marini; Stefano Stella; Francesco Ancona; Marco Spartera; Alberto Margonato; Eustachio Agricola
Journal:  World J Cardiol       Date:  2016-02-26

7.  Decreased left ventricular torsion in patients with isolated mitral stenosis.

Authors:  B Kirilmaz; F Asgun; S Saygi; E Ercan
Journal:  Herz       Date:  2013-10-25       Impact factor: 1.443

8.  The impact of isometric handgrip testing on left ventricular twist mechanics.

Authors:  Rory B Weiner; Arthur E Weyman; Jonathan H Kim; Thomas J Wang; Michael H Picard; Aaron L Baggish
Journal:  J Physiol       Date:  2012-08-13       Impact factor: 5.182

9.  Robust model-based quantification of global ventricular torsion from spatially sparse three-dimensional time series data by orthogonal distance regression: evaluation in a canine animal model under different pacing regimes.

Authors:  Sven Zenker; Hyung Kook Kim; Gilles Clermont; Michael R Pinsky
Journal:  Pacing Clin Electrophysiol       Date:  2012-08-16       Impact factor: 1.976

10.  Comparison of 2D and 3D calculation of left ventricular torsion as circumferential-longitudinal shear angle using cardiovascular magnetic resonance tagging.

Authors:  Iris K Rüssel; Sandra R Tecelão; Joost P A Kuijer; Robert M Heethaar; J Tim Marcus
Journal:  J Cardiovasc Magn Reson       Date:  2009-04-20       Impact factor: 5.364

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