Literature DB >> 6975559

Ultrastructural correlates of left ventricular contraction abnormalities in patients with chronic ischemic heart disease: determinants of reversible segmental asynergy postrevascularization surgery.

W Flameng, R Suy, F Schwarz, M Borgers, J Piessens, F Thone, H Van Ermen, H De Geest.   

Abstract

The relationships between structural alterations and left ventricular (LV) contraction abnormalities were studied in patients with coronary artery disease (CAD). Transmural biopsies of the LV anterior free wall were taken during aortocoronary bypass surgery (CABG) in 62 patients. When preoperative anterior wall motion (AWM) was reduced, significant myocardial cell degeneration was found in patients with as well as without previous anterior infarction (MI). The amount of myocardial fibrosis was increased only in patients with ECG evidence of previous anterior MI (p less than 0.001). In a second series of 139 CAD patients, cineventriculograms performed before and 8 months after CABG were examined. In patients with patent grafts to the LV anterior wall not previously infarcted, reduced AWM became normal. In patients with previous anterior MI the outcome of AWM was unpredictable (usually unimproved). Thus the histologic correlate of reduced AWM in segments not previously infarcted was progressive loss of contractile material in otherwise viable myocardial cells. Some reversibility was suggested by restoration of resting function after CABG. Unpredictable results in segments associated with pathologic Q waves appear related to the fibrous component of these previously infarcted areas.

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Year:  1981        PMID: 6975559     DOI: 10.1016/0002-8703(81)90035-1

Source DB:  PubMed          Journal:  Am Heart J        ISSN: 0002-8703            Impact factor:   4.749


  15 in total

Review 1.  Pathophysiology of myocardial hibernation. Implications for the use of dobutamine echocardiography to identify myocardial viability.

Authors:  J L Vanoverschelde; A Pasquet; B Gerber; J A Melin
Journal:  Heart       Date:  1999-11       Impact factor: 5.994

Review 2.  Hibernating myocardium.

Authors:  R Schulz; G Heusch
Journal:  Heart       Date:  2000-12       Impact factor: 5.994

Review 3.  Hibernating myocardium.

Authors:  John M Canty; James A Fallavollita
Journal:  J Nucl Cardiol       Date:  2005 Jan-Feb       Impact factor: 5.952

Review 4.  Hibernation and myocardial ischemia: clinical detection by positron emission tomography.

Authors:  N G Uren; P G Camici
Journal:  Cardiovasc Drugs Ther       Date:  1992-06       Impact factor: 3.727

Review 5.  Hibernating myocardium, a clinical entity.

Authors:  W Flameng; B Shivalkar
Journal:  Basic Res Cardiol       Date:  1995 Jan-Feb       Impact factor: 17.165

Review 6.  Hibernating myocardium.

Authors:  G R Heyndrickx
Journal:  Basic Res Cardiol       Date:  1995 Jan-Feb       Impact factor: 17.165

7.  Myocardial ischaemia. Dilemma between information available and information demand.

Authors:  M B Laver
Journal:  Br Heart J       Date:  1983-09

Review 8.  Some aspects of cardiac heterogeneity.

Authors:  H G Zimmer
Journal:  Basic Res Cardiol       Date:  1994 Mar-Apr       Impact factor: 17.165

9.  Distribution of calcium in a subset of chronic hibernating myocardium in man.

Authors:  M Borgers; S De Nollin; F Thoné; L Wouters; L Van Vaeck; W Flameng
Journal:  Histochem J       Date:  1993-04

Review 10.  Noninvasive assessment myocardial viability: current status and future directions.

Authors:  Kevin C Allman
Journal:  J Nucl Cardiol       Date:  2013-06-15       Impact factor: 5.952

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