Literature DB >> 17891610

Transit of blood flow through the human left ventricle mapped by cardiovascular magnetic resonance.

Ann F Bolger1, Einar Heiberg, Matts Karlsson, Lars Wigström, Jan Engvall, Andreas Sigfridsson, Tino Ebbers, John-Peder Escobar Kvitting, Carl Johan Carlhäll, Bengt Wranne.   

Abstract

BACKGROUND: The transit of blood through the beating heart is a basic aspect of cardiovascular physiology which remains incompletely studied. Quantification of the components of multidirectional flow in the normal left ventricle (LV) is lacking, making it difficult to put the changes observed with LV dysfunction and cardiac surgery into context.
METHODS: Three dimensional, three directional, time resolved magnetic resonance phase-contrast velocity mapping was performed at 1.5 Tesla in 17 normal subjects, 6 female, aged 44+/-14 years (mean+/-SD). We visualized and measured the relative volumes of LV flow components and the diastolic changes in inflowing kinetic energy (KE). Of total diastolic inflow volume, 44+/-11% followed a direct, albeit curved route to systolic ejection (videos 1 and 2), in contrast to 11% in a subject with mildly dilated cardiomyopathy (DCM), who was included for preliminary comparison (video 3). In normals, 16+/-8% of the KE of inflow was conserved to the end of diastole, compared with 5% in the DCM patient. Blood following the direct route lost or transferred less of its KE during diastole than blood that was retained until the next beat (1.6+/-1.0 millijoules vs 8.2+/-1.9 millijoules, p<0.05); whereas, in the DCM patient, the reduction in KE of retained inflow was 18-fold greater than that of the blood tracing the direct route.
CONCLUSION: Multidimensional flow mapping can measure the paths, compartmentalization and kinetic energy changes of blood flowing into the LV, demonstrating differences of KE loss between compartments, and potentially between the flows in normal and dilated left ventricles.

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Year:  2007        PMID: 17891610     DOI: 10.1080/10976640701544530

Source DB:  PubMed          Journal:  J Cardiovasc Magn Reson        ISSN: 1097-6647            Impact factor:   5.364


  70 in total

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Review 2.  Mitral valve disease--morphology and mechanisms.

Authors:  Robert A Levine; Albert A Hagége; Daniel P Judge; Muralidhar Padala; Jacob P Dal-Bianco; Elena Aikawa; Jonathan Beaudoin; Joyce Bischoff; Nabila Bouatia-Naji; Patrick Bruneval; Jonathan T Butcher; Alain Carpentier; Miguel Chaput; Adrian H Chester; Catherine Clusel; Francesca N Delling; Harry C Dietz; Christian Dina; Ronen Durst; Leticia Fernandez-Friera; Mark D Handschumacher; Morten O Jensen; Xavier P Jeunemaitre; Hervé Le Marec; Thierry Le Tourneau; Roger R Markwald; Jean Mérot; Emmanuel Messas; David P Milan; Tui Neri; Russell A Norris; David Peal; Maelle Perrocheau; Vincent Probst; Michael Pucéat; Nadia Rosenthal; Jorge Solis; Jean-Jacques Schott; Ehud Schwammenthal; Susan A Slaugenhaupt; Jae-Kwan Song; Magdi H Yacoub
Journal:  Nat Rev Cardiol       Date:  2015-10-20       Impact factor: 32.419

3.  A clinical method for mapping and quantifying blood stasis in the left ventricle.

Authors:  Lorenzo Rossini; Pablo Martinez-Legazpi; Vi Vu; Leticia Fernández-Friera; Candelas Pérez Del Villar; Sara Rodríguez-López; Yolanda Benito; María-Guadalupe Borja; David Pastor-Escuredo; Raquel Yotti; María J Ledesma-Carbayo; Andrew M Kahn; Borja Ibáñez; Francisco Fernández-Avilés; Karen May-Newman; Javier Bermejo; Juan C Del Álamo
Journal:  J Biomech       Date:  2015-11-30       Impact factor: 2.712

4.  Scan-rescan reproducibility of diastolic left ventricular kinetic energy, viscous energy loss and vorticity assessment using 4D flow MRI: analysis in healthy subjects.

Authors:  Vivian P Kamphuis; Jos J M Westenberg; Roel L F van der Palen; Pieter J van den Boogaard; Rob J van der Geest; Albert de Roos; Nico A Blom; Arno A W Roest; Mohammed S M Elbaz
Journal:  Int J Cardiovasc Imaging       Date:  2018-01-05       Impact factor: 2.357

Review 5.  Important advances in technology and unique applications related to cardiac magnetic resonance imaging.

Authors:  Mohamad G Ghosn; Dipan J Shah
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6.  The ventricular residence time distribution derived from 4D flow particle tracing: a novel marker of myocardial dysfunction.

Authors:  Benedict T Costello; Mateen Qadri; Bradley Price; Stavroula Papapostolou; Mark Thompson; James L Hare; Andre La Gerche; Murray Rudman; Andrew J Taylor
Journal:  Int J Cardiovasc Imaging       Date:  2018-06-27       Impact factor: 2.357

Review 7.  4D flow imaging: current status to future clinical applications.

Authors:  Michael Markl; Susanne Schnell; Alex J Barker
Journal:  Curr Cardiol Rep       Date:  2014-05       Impact factor: 2.931

8.  Vortex flow during early and late left ventricular filling in normal subjects: quantitative characterization using retrospectively-gated 4D flow cardiovascular magnetic resonance and three-dimensional vortex core analysis.

Authors:  Mohammed S M Elbaz; Emmeline E Calkoen; Jos J M Westenberg; Boudewijn P F Lelieveldt; Arno A W Roest; Rob J van der Geest
Journal:  J Cardiovasc Magn Reson       Date:  2014-09-27       Impact factor: 5.364

Review 9.  Evaluation of right and left ventricular diastolic filling.

Authors:  Ares Pasipoularides
Journal:  J Cardiovasc Transl Res       Date:  2013-04-13       Impact factor: 4.132

10.  Semi-automatic quantification of 4D left ventricular blood flow.

Authors:  Jonatan Eriksson; Carl Johan Carlhäll; Petter Dyverfeldt; Jan Engvall; Ann F Bolger; Tino Ebbers
Journal:  J Cardiovasc Magn Reson       Date:  2010-02-12       Impact factor: 5.364

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