…Figure 1A 2C. The orientation of myocardial muscle fibers results in longitudinal, radial and circumferential shortening (contraction). Traditional methods for investigating left ventricular function — e…
…and vascular consequences Common structural consequences include left ventricular hypertrophy, left atrial enlargement, and abnormalities of diastolic filling. Mitral regurgitation may develop through papillary muscle…
…Right ventricular strain When assessing the right half of the heart, it is important to familiarize yourself with the principles of hemodynamics and conditions prevailing…
…120 ms with a delta wave and QRS 110 ms. Brugada pattern type 1: ST elevation ≥ 2 mm of coved type with a negative T…
…than men after approximately 65 years of age. Hypertension related left ventricular hypertrophy, concentric remodelling, reduced longitudinal strain and heart failure with preserved ejection fraction…
…110/min, a systolic blood pressure < 100 mmHg and a saturation < 90 per cent. An sPESI of 0 indicates low risk. Anticoagulation A…
…favorable prognosis, as compared with other forms of ventricular tachycardia. Mechanisms of ventricular tachycardia Ventricular tachycardia (VT) may emerge due to increased/abnormal automaticity, re…
…and is thus a measure of systolic function. Strain and strain rate Myocardium deforms during systole and diastole. The deformation is due to contraction and…
…connection and the relationship of the great arteries (segmental analysis). Ventricular function is evaluated using ejection fraction, fractional shortening, stroke volume, and myocardial thickness. Strain…
…right sided chest leads and deeper S waves in left sided leads. Left ventricular hypertrophy (LVH) The most common causes of left ventricular hypertrophy are…
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