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The clinical course of primary myocardial disease in infants and children.

A total of 161 infants and children, ranging in age from 1 day to 17 years at initial encounter (mean, 3.7 years), was seen over a 30 year period with primary myocardial disease (idiopathic myocarditis, nonobstructive cardiomyopathy, endocardial fibroelastosis, and an anatomically unknown category). These patients were observed from 1 hour to 23 years after initial encounter and cardiac disease has resolved in 27 per cent, resulted in death in 35 per cent, and continues in 38 per cent. The majority were first referred to us with congestive heart failure; all exhibited ST-T changes and cardiomegaly, 67 of 150 had left ventricular hypertrophy, 23 of 151 arrhythmias, and 55 of 153 pulmonary vascular congestion. Initial ventricular depolarization abnormalities were very frequent. Significant clinical predictors of fatal outcome included pulmonary vascular congestion, "northwest" axis deviation, and a cardiac index less than three L./min./M.2. Death occurred during the first year after initial encounter in 44 of 57 who died, and in all 13 with proved myocarditis. Primary myocardial disease is a serious disease of infancy and childhood, resulting in death or residual cardiac disease in three fourths of those affected.

Adolescent↗

Vectorcardiographic criteria of high posterior infarction: differentiation from normal subjects, right ventricular hypertrophy and primary myocardial disease.

In order to differentiate the vectorcardiogram (VCG) in high posterior infarction (HPI) from VCGs of normal subjects, right ventricular hypertrophy (RVH) and primary myocardial disease (PMD), the following criteria were presented; cases satisfying the criteria could be diagnosed as high posterior infarction. In cases with posterior component/anterior component (P/L) less than 1.0 (Group A); (1)--45 degrees vector/ab less than or equal to 0.25, (2) the maximal T vector in the horizontal plane greater than or equal to + 20 degrees, (3) I (inferior component)/L (left component) less than 1.0 and (4) no anterior convexity of the afferent limb of the left sagittal QRS loop. In cases with P/A greater than or equal to 1.0 (Group B);--45 degrees vector/ab less than or equal to 0.2, (2) the maximal T vector in the horizontal plane greater than or equal to + 20 degrees, (3) I/L less than 1.0 and (4) no anterior convexity of the affernt limb of the left sagittal QRS loop. Only one false negative case in HPI was found and only seven false positive cases in normal subjects, RVH and PMD. A correct diagnosis can be made with 97.4% accuracy. These criteria for differentiation were tested by reexamining the cases with selective coronary arteriography. Five cases satisfied the criteria of this method. Complete obstruction of the circumflex coronary artery was found in four of these cases, and severe stenosis (greater than or equal to 90%) in one case. Akinesis or hypokinesis of the posterobasal segment in the left ventricle was also observed in all five cases.

Cardiomegaly↗

[Congestive, hypertropic cardiomyopathy--intermediary form of primary myocardial disease? (author's transl)].

A 43-year-old woman with anginal pain and the electrocardiographic signs of an old anterior infarction presented the clinical, hemodynamic and angiographic findings of congestive cardiomyopathy. Left ventricular (LV) end-diastolic volume was sizably increased, there was generalized hypokinetic wall motion and LV ejection fraction was reduced to 40 percent. The subsequent clinical course was characterized by progressive congestive heart failure and the patient died 4 years after the first appearance of symptoms. Autopsy revealed marked dilatation of all heart chambers and severe hypertrophy of the LV anterior wall. The LV posterior wall and the septum were less markedly hypertrophied. Light and electron microscopy showed the typical findings of hypertrophic cardiomyopathy in the anterior part of the LV wall whereas the septum and the LV posterior wall presented unspecific histological alterations. In conclusions, this case demonstrates that a clinically typical congestive cardiomyopathy may be associated with a localized area characteristic for hypertrophic cardiomyopathy. Thus it is a postulated that the described patient represents an intermediary form of primary myocardial disease.

Adult↗

Cardiac cell damage: a primary myocardial disease in streptozotocin-induced chronic diabetes.

Ultrastructural changes in heart muscle due to chronic diabetes subsequent to a single injection of streptozotocin (65 mg/kg body wt, i.v.) were studied in rats. Presence of diabetes was indicated by hyperglycaemia (plasma glucose, control, 120 +/- 7; diabetic, 448 +/- 21 mg/dl) as well as hypo-insulinaemia (plasma insulin, control, 25.6 +/- 5.2; diabetic, 11.2 +/- 0.5 microU/ml). After 8 weeks of diabetes, the hearts were processed for electron microscopic examination. Cardiac muscle cells in diabetic hearts showed condensation of nuclear chromatin and folding of nuclear membranes. Swelling of mitochondria, clearing of mitochondrial matrix and incorporation of lysosomal membranes into mitochondrial matrix was also noted. A marked increase in both lysosomes and lipid droplets was apparent. Focal areas in diabetic hearts showed contracted sarcomeres, myofibrillar degeneration and separation of the intercalated disc. Atherosclerotic plaque formation as well as structural changes in the smooth muscle or endothelial cells in the small arteries, arterioles or capillaries were not seen to accompany the structural changes in the cardiac muscle cells of the diabetic hearts. This study provides strong evidence for the occurrence of primary myocardial disease in streptozotocin-induced chronic diabetes.

Animals↗

Primary myocardial disease in the diabetic mouse. An ultrastructural study.

The hearts from C57BL/KsJ db+/db+ mice and controls were examined by light and electron microscopy at intervals during 5 to 28 weeks of age. C57BL/6J ob/ob mice and their lean littermates served as other controls. The percentage of increase in body and heart weights of the diabetic animals was 150% and 64% greater, respectively, than that of the controls. Over the period of observation there was progressive damage to the ventricular myocytes and intramural small arteries and arterioles of the diabetic animals. Initially, the cardiac muscle cells of both ventricles contained large numbers of lipid droplets. Subsequently, there was shrinkage and increased electron density of mitochondria that were enveloped by single limiting membranes that in turn gave rise to large residual bodies. This was followed by loss of myofilaments and atrophy of myocytes. Similar changes occurred in the smooth muscle cells of intramural arteries and arterioles but not in those of epicardial arteries. Reduplicated layers of basal laminae were seen around interstitial capillaries. Degenerative changes also occurred in perivascular nerve endings. These changes are discussed in relation to the altered metabolism of the diabetic state. It is concluded that the pathologic lesions in the cardiac muscle cells and intramural arterial vessels and capillaries constitute a primary myocardial disease in the genetically diabetic mouse.

Animals↗