Pressure overload (POL) is a classical model for studying cardiac hypertrophy, but there has been no direct measure of hemodynamics in a conscious ambulatory mouse model of POL. We used abdominal aortic constriction to produce POL and radiotelemetry to measure the blood pressure and heart rate for three weeks. The cardiac size correlated with the systolic pressure in the last week is better than other hemodynamic parameters. Cardiac fibrosis was more correlated to the cardiac size than to the systolic pressure. The expression of the cardiac genes that are typically associated with cardiac hypertrophy was correlated with both cardiac size and systolic pressure. In conclusion, the systolic pressure is the major determinant of cardiac hypertro...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
Myocardial hypertrophy is an adaptational process of the heart to increased workload caused by mecha...
Pressure overload (POL) is a classical model for studying cardiac hypertrophy, but there has been no...
Small animal models of afterload stress have contributed much to our present understanding of the pr...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
AbstractCardiac hypertrophy is an important risk factor for cardiac morbidity and mortality. To unra...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
Transverse aortic constriction (TAC) and angiotensin II (ANG II) subcutaneous osmotic pump infusion ...
Assessment of right ventricular (RV) function in rodents is a challenge due to the complex RV anatom...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
<div><p>Small animal models of afterload stress have contributed much to our present understanding o...
To evaluate whether the evolution of compensated pressure overload hypertrophy (POH) to overt heart ...
Cardiomyocyte hypertrophy is a critical precursor to the development of heart failure. Methods to ph...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
Myocardial hypertrophy is an adaptational process of the heart to increased workload caused by mecha...
Pressure overload (POL) is a classical model for studying cardiac hypertrophy, but there has been no...
Small animal models of afterload stress have contributed much to our present understanding of the pr...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
AbstractCardiac hypertrophy is an important risk factor for cardiac morbidity and mortality. To unra...
Abstract Background: The cardiac hypertrophy (CH) model for mice has been widely used, thereby prov...
Transverse aortic constriction (TAC) and angiotensin II (ANG II) subcutaneous osmotic pump infusion ...
Assessment of right ventricular (RV) function in rodents is a challenge due to the complex RV anatom...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
<div><p>Small animal models of afterload stress have contributed much to our present understanding o...
To evaluate whether the evolution of compensated pressure overload hypertrophy (POH) to overt heart ...
Cardiomyocyte hypertrophy is a critical precursor to the development of heart failure. Methods to ph...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
There is growing consensus that myocardial perfusion deficits play a pivotal role in the transition ...
Myocardial hypertrophy is an adaptational process of the heart to increased workload caused by mecha...