Monday, September 23, 2013

Cardiac hypertrophy and dilation

Cardiac hypertrophy and dilation
The heart may undergo compensatory enlargement in the form of hypertrophy, dilation, or both, so as to prevent or postpone heart failure.
Compensatory hypertrophy
·        Hypertrophy of the heart is defined as an increase in size and weight of the myocardium. It generally results from increased pressure load while creased volume load (e.g. valvular incompetence) results in hypertrophy with dilatation of the affected chamber due to regurgitation of the blood through incompetent valve. The atria may also undergo compensatory changes due lo increased workload.
·        It appears that stretching of myocardial fibers in response to stress induces the cells to increase in length. The elongated fibers receive better nutrition and thus increase in size.
Causes:
1. Left ventricular hypertrophy. The common causes of left ventricular hypertrophy are:
a)      Systemic hypertension.
b)      Aortic stenosis and insufficiency.
c)      Mitral insufficiency.
d)      Coarctation of the aorta.
e)      Occlusive coronary artery disease.
f)       Congenital anomalies like septal defects and patent ductus arteriosus.
g)      Conditions with increased cardiac output: thyrotoxicosis, anemia, and arteriovenous fistulae.
2. Right ventricular hypertrophy. Most of the causes of right ventricular hypertrophy are due to pulmonary arterial hypertension. These are:
a)      Pulmonary stenosis and insufficiency.
b)      Tricuspid insufficiency.
c)      Mitral stenosis and/or insufficiency.
d)      Chronic lung diseases: chronic emphysema, bronchiectasis, pneumoconiosis, pulmonary vascular diseases, etc.
e)      Left ventricular hypertrophy.

Compensatory dilation. Quite often, hypertrophy of the heart is accompanied by cardiac dilation.
·        Causes:
a)      Valvular insufficiency (mitral and/or aortic insufficiency in left ventricular dilatation, tricuspid and/or pulmonary insufficiency in right ventricular dilatation).
b)      Conditions with high cardiac output e.g. thyrotoxicosis, arteriovenous shunt.
c)      Myocardial diseases: cardiomyopathies, myocarditis.
d)      Systemic hypertension.
·        Hypertrophy of the myocardium without dilatation is referred to as concentric, and when associated with dilatation is called eccentric. The weight of the heart is increased above the normal, often over 500 gm.
·        Macroscopically, the thickness of the left ventricular wall above 15 mm is indicative of significant hypertrophy. In concentric hypertrophy, the lumen of the chamber is smaller than usual, while in eccentric hypertrophy the lumen is dilated. In pure hypertrophy, the papillary muscles and trabeculae cameae are rounded and enlarged, while in hypertrophy with dilatation these are flattened.

·        Microscopically, there is increase in size of individual muscle fibres. There may be multiple minute foci of degenerative changes and necrosis in the hypertrophied myocardium.