Literature DB >> 23530490

The prognostic value of electrocardiographic estimation of left ventricular hypertrophy in dialysis patients.

Adrian C Covic1, Laura-Dumitriţa Buimistriuc, Darren Green, Alina Stefan, Silvia Badarau, Philip A Kalra.   

Abstract

BACKGROUND: Left ventricular hypertrophy (LVH) is associated with poor cardiovascular outcome in CKD. Electrocardiogram (ECG) is low-cost but infrequently used to assess presence of LVH in dialysis patients. The aim of this study was to establish which ECG-determined LVH method is most sensitive in dialysis patients, and also most predictive of death.
METHODS: This was a longitudinal observational study in dialysis patients from a single center, undergoing interval ECGs. Fourteen methods of ECG LVH assessment were compared. Survival was also compared between four LVH evolutionary categories: persistent LVH; new LVH; LVH regression; and no LVH.
RESULTS: The study included 418 dialysis patients (46.3% women, mean age 51 years, mean follow up 67 months, 76 deaths, 37 cardiovascular deaths). LVH prevalence varied according to method (range 13.4-41.9%). No measurement predicted all-cause mortality. After Cox regression, there was an independent association between LVH and cardiovascular mortality using Novacode (HR = 3.04; 95% [CI] = 1.11-8.28, P < 0.05), but not with other methods. Patients with persistent ECG changes of LVH had increased risk of cardiovascular mortality compared to other LVH evolutionary categories (P < 0.044).
CONCLUSIONS: ECG scoring of LVH can be predictive of cardiovascular mortality. The Novacode method, based on repolarization abnormalities, is a better predictor than standard ECG techniques that are based on voltage criteria. Novacode LVH estimation at dialysis initiation may prove to be a noninvasive and cost-effective bedside tool for cardiovascular risk stratification in patients receiving dialysis. ©2012, Wiley Periodicals, Inc.

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Year:  2012        PMID: 23530490      PMCID: PMC6932084          DOI: 10.1111/anec.12007

Source DB:  PubMed          Journal:  Ann Noninvasive Electrocardiol        ISSN: 1082-720X            Impact factor:   1.468


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Review 1.  An evidence-based review of the resting electrocardiogram as a screening technique for heart disease.

Authors:  E A Ashley; V Raxwal; V Froelicher
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Review 2.  AHA/ACCF/HRS recommendations for the standardization and interpretation of the electrocardiogram: part V: electrocardiogram changes associated with cardiac chamber hypertrophy: a scientific statement from the American Heart Association Electrocardiography and Arrhythmias Committee, Council on Clinical Cardiology; the American College of Cardiology Foundation; and the Heart Rhythm Society: endorsed by the International Society for Computerized Electrocardiology.

Authors:  E William Hancock; Barbara J Deal; David M Mirvis; Peter Okin; Paul Kligfield; Leonard S Gettes; James J Bailey; Rory Childers; Anton Gorgels; Mark Josephson; Jan A Kors; Peter Macfarlane; Jay W Mason; Olle Pahlm; Pentti M Rautaharju; Borys Surawicz; Gerard van Herpen; Galen S Wagner; Hein Wellens
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3.  Prognostic implications of left ventricular hypertrophy.

Authors:  B A Vakili; P M Okin; R B Devereux
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4.  Classification of the electrocardiogram for population studies: Minnesota Code.

Authors:  H Blackburn
Journal:  J Electrocardiol       Date:  1969-07       Impact factor: 1.438

5.  Improved ECG models for left ventricular mass adjusted for body size, with specific algorithms for normal conduction, bundle branch blocks, and old myocardial infarction.

Authors:  P M Rautaharju; S H Zhou; L P Park
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6.  Determinants of sensitivity and specificity of electrocardiographic criteria for left ventricular hypertrophy.

Authors:  D Levy; S B Labib; K M Anderson; J C Christiansen; W B Kannel; W P Castelli
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7.  Electrocardiographic detection of left ventricular hypertrophy by the simple QRS voltage-duration product.

Authors:  T J Molloy; P M Okin; R B Devereux; P Kligfield
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Review 8.  Accuracy of electrocardiography in diagnosis of left ventricular hypertrophy in arterial hypertension: systematic review.

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9.  Improved electrocardiographic diagnosis of left ventricular hypertrophy.

Authors:  G Schillaci; P Verdecchia; C Borgioni; A Ciucci; M Guerrieri; I Zampi; M Battistelli; C Bartoccini; C Porcellati
Journal:  Am J Cardiol       Date:  1994-10-01       Impact factor: 2.778

10.  Left ventricular hypertrophy: relationship of anatomic, echocardiographic and electrocardiographic findings.

Authors:  N Reichek; R B Devereux
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