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bioRxiv

SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes

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Härtter, D; Hauke, L; Driehorst, T; Long, Y; Bao, G; Primeßnig, A; Berečić, B; Cyganek, L; Tiburcy, M; Schmidt, C; Zimmermann, W-H
2025

Duke Scholars

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2025
 

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Härtter, D., Hauke, L., Driehorst, T., Long, Y., Bao, G., Primeßnig, A., … Zimmermann, W.-H. (2025). SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes. bioRxiv. https://doi.org/10.1101/2025.04.29.650605
Härtter, Daniel, Lara Hauke, Til Driehorst, Yuxi Long, Guobin Bao, Andreas Primeßnig, Branimir Berečić, et al. “SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes.” BioRxiv, 2025. https://doi.org/10.1101/2025.04.29.650605.
Härtter D, Hauke L, Driehorst T, Long Y, Bao G, Primeßnig A, et al. SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes. bioRxiv. 2025.
Härtter, Daniel, et al. “SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes.” BioRxiv, 2025. Epmc, doi:10.1101/2025.04.29.650605.
Härtter D, Hauke L, Driehorst T, Long Y, Bao G, Primeßnig A, Berečić B, Cyganek L, Tiburcy M, Schmidt C, Zimmermann W-H. SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes. bioRxiv. 2025.

DOI

Publication Date

2025