bioRxiv
Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction
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Haertter, D; Hauke, L; Driehorst, T; Nishi, K; Zimmermann, W-H; Schmidt, C
2024
Duke Scholars
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Haertter, D., Hauke, L., Driehorst, T., Nishi, K., Zimmermann, W.-H., & Schmidt, C. (2024). Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction. bioRxiv. https://doi.org/10.1101/2024.05.28.596183
Haertter, Daniel, Lara Hauke, Til Driehorst, Kengo Nishi, Wolfram-Hubertus Zimmermann, and Christoph Schmidt. “Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction.” BioRxiv, 2024. https://doi.org/10.1101/2024.05.28.596183.
Haertter D, Hauke L, Driehorst T, Nishi K, Zimmermann W-H, Schmidt C. Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction. bioRxiv. 2024.
Haertter, Daniel, et al. “Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction.” BioRxiv, 2024. Epmc, doi:10.1101/2024.05.28.596183.
Haertter D, Hauke L, Driehorst T, Nishi K, Zimmermann W-H, Schmidt C. Sarcomere dynamic instability and stochastic heterogeneity drive robust cardiomyocyte contraction. bioRxiv. 2024.