Seminar Description The Morotti laboratory develops computational and statistical approaches to understand the cellular mechanisms of cardiac excitation-contraction coupling and how their dysregulation contributes to heart disease.
Seminar Description The Vorobyov laboratory uses molecular modeling and computational approaches to investigate the structure and function of ion channels and their modulation by drugs and membrane lipids.
Seminar Description The Sato laboratory uses mathematical and computational modeling to investigate cardiac action potentials and calcium signaling, including nonlinear mechanisms that contribute to cardiac arrhythmias.
Seminar Description The Gelli laboratory studies the molecular mechanisms of fungal pathogenesis, with an emphasis on identifying virulence determinants that enable pathogenic fungi to cause disease.
Seminar Description The Goldman laboratory investigates the structural dynamics and molecular mechanisms of biological machines, including molecular motors, ribosomes, and RNA helicases, using advanced single-molecule approaches.
Seminar Description The Nieves-Cintron laboratory investigates molecular and cellular mechanisms that regulate vascular function and how disruption of these signaling pathways contributes to cardiovascular and metabolic disease.
Seminar Description The Diaz laboratory uses molecular, cellular, and biochemical approaches to investigate nervous system development, with particular interests in neural proliferation and the molecular mechanisms controlling synapse development and function.
Seminar Description The Bers laboratory investigates the cellular and molecular mechanisms controlling cardiac contraction, with particular emphasis on calcium and sodium signaling, electrophysiology, and mechanisms contributing to heart failure and arrhythmias.
Seminar Description The Martin laboratory investigates cytoprotective signaling mechanisms in muscle, with an emphasis on pathways that help cells respond and adapt to physiological and pathological stress.
Seminar Description The Wulff laboratory studies potassium channels as regulators of cellular function and explores potassium-channel modulators as potential therapies for autoimmune and cardiovascular diseases.