- Home
- Search Results
- Page 1 of 1
Search for: All records
-
Total Resources5
- Resource Type
-
0002000003000000
- More
- Availability
-
41
- Author / Contributor
- Filter by Author / Creator
-
-
Bifano, Thomas G. (4)
-
Adams, Bernhard W. (2)
-
Agarwal, Arvind (2)
-
Akif, Adil (2)
-
Barber, H. Bradford (2)
-
Cherepy, Nerine J. (2)
-
Furenlid, Lars R. (2)
-
Grim, Gary P. (2)
-
Gupta, Rajiv (2)
-
Kingon, Angus I. (2)
-
Koch, Jeffrey A. (2)
-
Lou, Lihua (2)
-
Morse, Theodore F. (2)
-
Murphy, Timothy P. (2)
-
Stankus, Brian (2)
-
Weber, Peter M. (2)
-
Baker, Brendon M (1)
-
Beaulieu, Devin R. (1)
-
Bifano, Thomas G (1)
-
Chen, Christopher S (1)
-
- Filter by Editor
-
-
null (1)
-
& Spizer, S. M. (0)
-
& . Spizer, S. (0)
-
& Ahn, J. (0)
-
& Bateiha, S. (0)
-
& Bosch, N. (0)
-
& Brennan K. (0)
-
& Brennan, K. (0)
-
& Chen, B. (0)
-
& Chen, Bodong (0)
-
& Drown, S. (0)
-
& Ferretti, F. (0)
-
& Higgins, A. (0)
-
& J. Peters (0)
-
& Kali, Y. (0)
-
& Ruiz-Arias, P.M. (0)
-
& S. Spitzer (0)
-
& Sahin. I. (0)
-
& Spitzer, S. (0)
-
& Spitzer, S.M. (0)
-
-
Have feedback or suggestions for a way to improve these results?
!
Note: When clicking on a Digital Object Identifier (DOI) number, you will be taken to an external site maintained by the publisher.
Some full text articles may not yet be available without a charge during the embargo (administrative interval).
What is a DOI Number?
Some links on this page may take you to non-federal websites. Their policies may differ from this site.
-
Recent innovations in differentiating cardiomyocytes from human induced pluripotent stem cells (hiPSCs) have unlocked a viable path to creating in vitro cardiac models. Currently, hiPSC-derived cardiomyocytes (hiPSC-CMs) remain immature, leading many in the field to explore approaches to enhance cell and tissue maturation. Here, we systematically analyzed 300 studies using hiPSC-CM models to determine common fabrication, maturation and assessment techniques used to evaluate cardiomyocyte functionality and maturity and compiled the data into an open-access database. Based on this analysis, we present the diversity of, and current trends in, in vitro models and highlight the most common and promising practices for functional assessments. We further analyzed outputs spanning structural maturity, contractile function, electrophysiology and gene expression and note field-wide improvements over time. Finally, we discuss opportunities to collectively pursue the shared goal of hiPSC-CM model development, maturation and assessment that we believe are critical for engineering mature cardiac tissue.more » « lessFree, publicly-accessible full text available November 8, 2025
-
Li, Huate; Sundaram, Subramanian; Hu, Ruifeng; Lou, Lihua; Sanchez, Francisco; McDonald, William; Agarwal, Arvind; Chen, Christopher S.; Bifano, Thomas G. (, IEEE Transactions on Biomedical Engineering)
-
Beaulieu, Devin R.; Davison, Ian G.; Kılıç, Kıvılcım; Bifano, Thomas G.; Mertz, Jerome (, Nature Methods)null (Ed.)
-
Kingon, Angus I.; Morse, Theodore F.; Weber, Peter M.; Akif, Adil; Gupta, Rajiv; Murphy, Timothy P.; Cherepy, Nerine J.; Adams, Bernhard W.; Bifano, Thomas G.; Stankus, Brian; et al (, Radiation Detectors in Medicine, Industry, and National Security XIX)
-
Mostovych, Nicholas A.; Morse, Theodore F.; Gupta, Rajiv; Murphy, Timothy P.; Weber, Peter M.; Cherepy, Nerine J.; Adams, Bernhard W.; Bifano, Thomas G.; Stankus, Brian; Akif, Adil; et al (, Radiation Detectors in Medicine, Industry, and National Security XIX)
An official website of the United States government
