
Stretch calculated from grip distance accurately approximates mid-specimen stretch in large elastic arteries in uniaxial tensile tests.
/in Arterial Mechanics, Pre-ClinicalA novel in vivo approach to assess radial and axial distensibility of large and intermediate pulmonary artery branches.
/in Arterial Mechanics, Pre-Clinical, StressMitochondria DNA mutations cause sex-dependent development of hypertension and alterations in cardiovascular function.
/in Arterial Mechanics, Fibrosis, Genetics, Hemodynamics, Pre-Clinical, RV Function, Sex & MaturationImpact of hematocrit on right ventricular afterload during the progression of hypoxic pulmonary hypertension.
/in Arterial Mechanics, Hemodynamics, Pre-Clinical, RV Function, StressPulmonary artery relative area change is inversely related to ex vivo measured arterial elastic modulus in the canine model of acute pulmonary embolization.
/in Arterial Mechanics, Pre-Clinical, StressDirect and Indirect protection of right ventricular function by estrogen in an experimental model of pulmonary arterial hypertension.
/in Arterial Mechanics, Fibrosis, Hemodynamics, Pre-Clinical, RV Function, Sex & Maturation, StressLow cost MRI-compatible stepper exercise device for use cardiac stress tests.
/in Arterial Mechanics, Clinical, Hemodynamics, RV Function, StressNon-invasive assessment of cardiac function and pulmonary vascular resistance in an canine model of acute thromboembolic pulmonary hypertension using 4D flow cardiovascular magnetic resonance.
/in Arterial Mechanics, Hemodynamics, Pre-Clinical, RV Function, StressProgressive right ventricular function and structural changes in a mouse model of pulmonary arterial hypertension.
/in Arterial Mechanics, Fibrosis, 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