The effect of potassium ion depletion on postinfarction canine cardiac arrhythmias.
Author(s) -
Hasan Garan,
B A McGovern,
Vincent J. Canzanello,
Julie C. McCauley,
M Bödvarsson,
John T. Harrington,
Nicolaos E. Madias,
John Newell,
Jeremy N. Ruskin
Publication year - 1988
Publication title -
circulation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.795
H-Index - 607
eISSN - 1524-4539
pISSN - 0009-7322
DOI - 10.1161/01.cir.77.3.696
Subject(s) - medicine , ventricular fibrillation , cardiology , myocardial infarction , infarction , fibrillation , population , atrial fibrillation , environmental health
The effect of potassium ion (K+) depletion on postmyocardial infarction ventricular arrhythmias was investigated in 32 dogs: 12 control animals, 10 animals that ate a diet extremely low in K+ for 15 days, and 10 others that, in addition to dietary K+ deprivation, received 50 mg of hydrochlorothiazide four times. The experimental myocardial infarction was created by proximal left anterior descending coronary artery ligation. In a subgroup of 24 animals selected for relatively uniform size of myocardial infarction (14% to 22% of left ventricular mass), eight animals with mean cumulative K+ balance of -4.01 +/- 2.19 meq/kg developed spontaneous ventricular fibrillation within 4 to 17 min of coronary ligation, whereas 16 animals with a mean cumulative K+ balance of -0.11 +/- 1.82 meq/kg didn't. By univariate analysis cumulative K+ deficit (p = .001) and plasma K+ concentration (p = .039) correlated significantly with spontaneous ventricular fibrillation. Multivariate analysis of the entire population of 32 animals identified cumulative K+ deficit and size of myocardial infarction as the only independent predictors of ventricular fibrillation. Cumulative K+ deficit was also an independent predictor of ventricular fibrillation induced by programmed cardiac stimulation in the conscious state 1 day after myocardial infarction.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom