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Circulation. Cardiovascular Genetics|July 18, 2014
Sarcomere mutation-specific expression patterns in human hypertrophic cardiomyopathyAdam S Helms, Frank M Davis, David Coleman, et al.
Thrombosis and Haemostasis|September 8, 2004
Murine thrombosis modelsSharlene M Day, Jennifer L Reeve, Daniel D Myers, et al.
JACC. Basic to Translational Science|October 4, 2023
An Unbiased Screen Identified the Hsp70-BAG3 Complex as a Regulator of Myosin-Binding Protein C3Andrea D Thompson, Marcus J Wagner, Juliani Rodriguez, et al.
JCI Insight|December 27, 2019
Effects of MYBPC3 loss-of-function mutations preceding hypertrophic cardiomyopathyAdam S Helms, Vi T Tang, Thomas S O'Leary, et al.
Journal of Molecular and Cellular Cardiology|December 15, 2018
MYBPC3 truncation mutations enhance actomyosin contractile mechanics in human hypertrophic cardiomyopathyThomas S O'Leary, Julia Snyder, Sakthivel Sadayappan, et al.
Biorxiv : the Preprint Server for Biology|August 6, 2025
Investigating the role of long non-coding RNA in hypertrophic cardiomyopathyGraham A Branscom, Michael Morley, Jonathan J Herrera, et al.
Circulation Research|April 3, 2004
Parvalbumin corrects slowed relaxation in adult cardiac myocytes expressing hypertrophic cardiomyopathy-linked alpha-tropomyosin mutationsPierre Coutu, Christina N Bennett, Elizabeth G Favre, et al.
Physiological Reports|May 2, 2024
High-intensity exercise training using a rotarod instrument (RotaHIIT) significantly improves exercise capacity in miceJonathan J Herrera, Christopher M McAllister, Danielle Szczesniak, et al.
JAMA Cardiology|January 7, 2026
Social Determinants of Health and Clinical Outcomes in Hypertrophic CardiomyopathyNeha Hafeez, Brian L Claggett, Anjali T Owens, et al.
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