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The Journal of Physiology
|
October 2, 2025
Mechanistic insights into sex differences in atrial electrophysiology and arrhythmia vulnerability through sex-specific computational models
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
Biorxiv : the Preprint Server for Biology
|
September 2, 2025
Mechanistic Insights into Sex Differences in Atrial Electrophysiology and Arrhythmia Vulnerability through Sex-specific Computational Models
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
Biorxiv : the Preprint Server for Biology
|
February 23, 2026
Predicting Sex-Specific Antiarrhythmic Strategies for Atrial Fibrillation through a Regression-Guided Computational Modeling Pipeline
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
American Journal of Physiology. Heart and Circulatory Physiology
|
August 25, 2023
Dual effects of the small-conductance Ca<sup>2+</sup>-activated K<sup>+</sup> current on human atrial electrophysiology and Ca<sup>2+</sup>-driven arrhythmogenesis: an in silico study
Nathaniel T Herrera, Xianwei Zhang, Haibo Ni, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 4) with videos related to
Sort By:
Page
of 1
The Journal of Physiology
|
October 2, 2025
Mechanistic insights into sex differences in atrial electrophysiology and arrhythmia vulnerability through sex-specific computational models
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
Biorxiv : the Preprint Server for Biology
|
September 2, 2025
Mechanistic Insights into Sex Differences in Atrial Electrophysiology and Arrhythmia Vulnerability through Sex-specific Computational Models
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
Biorxiv : the Preprint Server for Biology
|
February 23, 2026
Predicting Sex-Specific Antiarrhythmic Strategies for Atrial Fibrillation through a Regression-Guided Computational Modeling Pipeline
Nathaniel T Herrera, Haibo Ni, Charlotte E R Smith, et al.
American Journal of Physiology. Heart and Circulatory Physiology
|
August 25, 2023
Dual effects of the small-conductance Ca<sup>2+</sup>-activated K<sup>+</sup> current on human atrial electrophysiology and Ca<sup>2+</sup>-driven arrhythmogenesis: an in silico study
Nathaniel T Herrera, Xianwei Zhang, Haibo Ni, et al.
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of 1