Estrogen preserves pulsatile pulmonary arterial hemodynamics in pulmonary arterial hypertension.
/in Arterial Mechanics, Hemodynamics, Pre-Clinical, RV Function, Sex & Maturation, Stress17?-estradiol mediates superior adaptation of right ventricular function to acute strenuous exercise in female rats with severe pulmonary hypertension.
/in Arterial Mechanics, Fibrosis, Hemodynamics, Pre-Clinical, RV Function, Sex & Maturation, StressHeterogeneous mechanics of the mouse pulmonary arterial network.
/in Arterial Mechanics, Hemodynamics, In Silico, Pre-ClinicalLimiting collagen turnover via collagenase-resistance attenuates right ventricular dysfunction and fibrosis in pulmonary arterial hypertension.
/in Fibrosis, Genetics, Hemodynamics, Pre-Clinical, RV Function, StressIncreased red blood cell stiffness increases pulmonary vascular resistance and pulmonary arterial pressure.
/in Hemodynamics, Pre-Clinical, RV FunctionValidation of an arterial constitutive model accounting for collagen content and crosslinking.
/in Arterial Mechanics, Fibrosis, Genetics, In Silico, Pre-Clinical, Stress17?-estradiol attenuates conduit pulmonary artery mechanical property changes with pulmonary arterial hypertension.
/in Arterial Mechanics, Fibrosis, Pre-Clinical, Sex & Maturation, StressStretch calculated from grip distance accurately approximates mid-specimen stretch in large elastic arteries in uniaxial tensile tests.
/in Arterial Mechanics, Pre-ClinicalAccuracy of doppler echocardiographic estimates of pulmonary artery pressures in a canine model of pulmonary hypertension.
/in Hemodynamics, Pre-Clinical, RV Function, StressChesler Lab
Professor Naomi C. Chesler
University of California, Irvine
419 South Circle View Drive
6830 ISEB
Irvine, CA 92697
(949) 824-3941
nchesler@uci.edu


