
Hemodynamic assessment of pulmonary hypertension in mice: A model based analysis of the disease mechanism
/in Arterial Mechanics, Hemodynamics, In Silico, Pre-ClinicalImpaired myofilament contraction drives right ventricular failure secondary to pressure overload: model simulations, experimental validation, and treatment predictions
/in Arterial Mechanics, Fibrosis, Hemodynamics, In Silico, Pre-Clinical, RV Function, StressCardiovascular function and structure are preserved despite induced ablation of BMP1-related proteinases
/in Arterial Mechanics, Fibrosis, Hemodynamics, In Vitro, Pre-Clinical, RV FunctionMultiscale Computational Analysis of RV Mechanoenergetics
/in Arterial Mechanics, Fibrosis, Hemodynamics, In Silico, In Vitro, Pre-Clinical, RV FunctionOrgan-level right ventricular dysfunction with preserved Frank-Starling mechanism in a mouse model of pulmonary arterial hypertension
/in Arterial Mechanics, Hemodynamics, In Vitro, Pre-Clinical, RV FunctionPBX transcription factors drive pulmonary vascular adaptation to birth
/in Arterial Mechanics, Genetics, Hemodynamics, In Vitro, Pre-Clinical, RV FunctionCharacteristic Impedance: Frequency or Time Domain Approach.
/in Arterial Mechanics, Hemodynamics, In Silico, StressRight ventricular-pulmonary vascular interactions: A Review
/in Arterial Mechanics, Hemodynamics, RV FunctionDobutamine stress MRI in pulmonary hypertension: relationships between stress pulmonary artery relative area change, RV performance, and 10-year survival.
/in Arterial Mechanics, Clinical, RV FunctionChesler 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