Fast Measurement Of Left Ventricular Mass With Real Time Three

fast Measurement Of Left Ventricular Mass With Real Time Three
fast Measurement Of Left Ventricular Mass With Real Time Three

Fast Measurement Of Left Ventricular Mass With Real Time Three Background— left ventricular (lv) mass is an important predictor of morbidity and mortality, especially in patients with systemic hypertension. however, the accuracy of 2d echocardiographic lv mass measurements is limited because acquiring anatomically correct apical views is often difficult. we tested the hypothesis that lv mass could be measured more accurately from real time 3d (rt3d. Cmr lv mass values were obtained through standard techniques (mass analysis, ge). the rt3d data resulted in significantly larger lv long axis dimensions and measurements of lv mass that correlated with cmr better (r=0.90) than 2d (r=0.79). the 2d technique underestimated lv mass (bias, 39%), whereas rt3d measurements showed only minimal bias (3%).

fast Measurement Of Left Ventricular Mass With Real Time Three
fast Measurement Of Left Ventricular Mass With Real Time Three

Fast Measurement Of Left Ventricular Mass With Real Time Three Measurements of lv mass that correlated with cmr better (r 0.90) than 2d (r 0.79). the 2d technique underestimated lv mass (bias, 39%), whereas rt3d measurements showed only minimal bias (3%). the 95% limits of agreement were significantly wider for 2d (52%) than rt3d (28%). additionally, the rt3d technique reduced the. Background— left ventricular (lv) mass is an important predictor of morbidity and mortality, especially in patients with systemic hypertension. however, the accuracy of 2d echocardiographic lv mass m. Cardiac magnetic resonance (cmr) imaging is a gold standard investigation for assessing left ventricular volume, left ventricular mass, and left ventricular ejection fraction (lvef) due to its. Rt3d imaging provides the basis for accurate and reliable measurement of lv mass, as tested by comparing 2d and rt3d measurements against cardiac mr (cmr) measurements. background—left ventricular (lv) mass is an important predictor of morbidity and mortality, especially in patients with systemic hypertension. however, the accuracy of 2d echocardiographic lv mass measurements is limited.

fast Measurement Of Left Ventricular Mass With Real Time Three
fast Measurement Of Left Ventricular Mass With Real Time Three

Fast Measurement Of Left Ventricular Mass With Real Time Three Cardiac magnetic resonance (cmr) imaging is a gold standard investigation for assessing left ventricular volume, left ventricular mass, and left ventricular ejection fraction (lvef) due to its. Rt3d imaging provides the basis for accurate and reliable measurement of lv mass, as tested by comparing 2d and rt3d measurements against cardiac mr (cmr) measurements. background—left ventricular (lv) mass is an important predictor of morbidity and mortality, especially in patients with systemic hypertension. however, the accuracy of 2d echocardiographic lv mass measurements is limited. Fast measurement of left ventricular mass with real time three dimensional echocardiography: comparison with magnetic resonance imaging. Fast measurement of left ventricular mass with real time three dimensional echocardiography: comparison with magnetic resonance imaging. circulation 110 , 1814–8 (2004). article google scholar.

fast Measurement Of Left Ventricular Mass With Real Time Three
fast Measurement Of Left Ventricular Mass With Real Time Three

Fast Measurement Of Left Ventricular Mass With Real Time Three Fast measurement of left ventricular mass with real time three dimensional echocardiography: comparison with magnetic resonance imaging. Fast measurement of left ventricular mass with real time three dimensional echocardiography: comparison with magnetic resonance imaging. circulation 110 , 1814–8 (2004). article google scholar.

fast Measurement Of Left Ventricular Mass With Real Time Three
fast Measurement Of Left Ventricular Mass With Real Time Three

Fast Measurement Of Left Ventricular Mass With Real Time Three

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