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Frontiers in Physiology|January 10, 2022
Seeing the Light: The Use of Zebrafish for Optogenetic Studies of the HeartJonathan S Baillie, Matthew R Stoyek, T Alexander QuinnEuropean Heart Journal|August 5, 2011
Rediscovering the third coronary arteryRebecca A B Burton, T Alexander Quinn, Peter KohlProgress in Biophysics and Molecular Biology|August 7, 2018
Age-associated changes in electrical function of the zebrafish heartMatthew R Stoyek, Eva A Rog-Zielinska, T Alexander QuinnSeminars in Cancer Biology|October 11, 2023
Extracellular vesicles as a potential delivery platform for CRISPR-Cas based therapy in epithelial ovarian cancerNihar Godbole, Alexander Quinn, Flavio Carrion, et al.Gene|August 8, 2025
Optimizing the delivery of CRISPR/Cas9 ribonucleoproteins for efficient genome editing in bovine embryosXiaofeng Du, Alexander Quinn, Moira Menzies, et al.Europace : European Pacing, Arrhythmias, and Cardiac Electrophysiology : Journal of the Working Groups on Cardiac Pacing, Arrhythmias, and Cardiac Cellular Electrophysiology of the European Society of Cardiology|June 10, 2005
Optimized perioperative biventricular pacing in setting of right heart failureGeorge Berberian, Joshua P Kanter, T Alexander Quinn, et al.Scientific Reports|February 4, 2017
Reduced Activity of SRY and its Target Enhancer Sox9-TESCO in a Mouse Species with X*Y Sex ReversalLiang Zhao, Alexander Quinn, Ee Ting Ng, et al.Comprehensive Physiology|October 2, 2015
Physiological Implications of Myocardial Scar StructureWilliam J Richardson, Samantha A Clarke, T Alexander Quinn, et al.American Journal of Physiology. Heart and Circulatory Physiology|June 26, 2016
Zebrafish heart as a model to study the integrative autonomic control of pacemaker functionMatthew R Stoyek, T Alexander Quinn, Roger P Croll, et al.Plos Genetics|January 4, 2017
Normal Levels of Sox9 Expression in the Developing Mouse Testis Depend on the TES/TESCO Enhancer, but This Does Not Act AloneNitzan Gonen, Alexander Quinn, Helen C O'Neill, et al.Pageof 9