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Nima Momtahan

Showing results (1-10 of 15) with videos related to

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Trends in Molecular Medicine|May 14, 2019
The Role of Reactive Oxygen Species in In Vitro Cardiac MaturationNima Momtahan, Cody O Crosby, Janet Zoldan
Tissue Engineering. Part B, Reviews|August 2, 2014
Strategies and processes to decellularize and recellularize hearts to generate functional organs and reduce the risk of thrombosisNima Momtahan, Sivaprasad Sukavaneshvar, Beverly L Roeder, et al.
Biorxiv : the Preprint Server for Biology|July 14, 2025
Optimizing cardiac organoid culture to enhance maturation, viability, and cardiotoxicity assessmentsAnirudha Harihara, Khashayar Moshksayan, Nima Momtahan, et al.
Methods in Molecular Biology (Clifton, N.J.)|May 1, 2017
Extracellular Matrix from Whole Porcine Heart Decellularization for Cardiac Tissue EngineeringMatthew J Hodgson, Christopher C Knutson, Nima Momtahan, et al.
Tissue Engineering. Part A|November 3, 2025
Evaluating Seeding Density Effects on Cardiac Organoid Health and Functionality for Toxicity StudiesAnirudha Harihara, Khashayar Moshksayan, Nima Momtahan, et al.
APL Bioengineering|January 5, 2026
Development of low-cost electrical stimulation device to promote hiPSC-CM differentiation and functionalityNikhith Kalkunte, Sogu Sohn, Cody Callahan, et al.
Tissue Engineering. Part A|February 8, 2019
Temporal Impact of Substrate Anisotropy on Differentiating Cardiomyocyte Alignment and FunctionalityAlicia C B Allen, Elissa Barone, Nima Momtahan, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|April 28, 2026
Connexin 43-Enriched Vesicles Improve Synchronization in hiPSC-Derived CardiomyocytesNima Momtahan, Anna K McClain, Andrea Trementozzi, et al.
Biorxiv : the Preprint Server for Biology|June 12, 2025
Modulating Hydrogel Stiffness Through Light-Based 3D Printing to Mimic Cardiac Fibrosis and Cardiomyocyte Dysfunction Using hiPSC-Derived CellsSogu Sohn, Nima Momtahan, Lynn M Stevens, et al.
Journal of Biomedical Materials Research. Part A|October 7, 2025
Modulating Hydrogel Stiffness Through Light-Based 3D Printing to Mimic Cardiac Fibrosis and Cardiomyocyte Dysfunction Using hiPSC-Derived CellsSogu Sohn, Nima Momtahan, Lynn M Stevens, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Trends in Molecular Medicine|May 14, 2019
The Role of Reactive Oxygen Species in In Vitro Cardiac MaturationNima Momtahan, Cody O Crosby, Janet Zoldan
Tissue Engineering. Part B, Reviews|August 2, 2014
Strategies and processes to decellularize and recellularize hearts to generate functional organs and reduce the risk of thrombosisNima Momtahan, Sivaprasad Sukavaneshvar, Beverly L Roeder, et al.
Biorxiv : the Preprint Server for Biology|July 14, 2025
Optimizing cardiac organoid culture to enhance maturation, viability, and cardiotoxicity assessmentsAnirudha Harihara, Khashayar Moshksayan, Nima Momtahan, et al.
Methods in Molecular Biology (Clifton, N.J.)|May 1, 2017
Extracellular Matrix from Whole Porcine Heart Decellularization for Cardiac Tissue EngineeringMatthew J Hodgson, Christopher C Knutson, Nima Momtahan, et al.
Tissue Engineering. Part A|November 3, 2025
Evaluating Seeding Density Effects on Cardiac Organoid Health and Functionality for Toxicity StudiesAnirudha Harihara, Khashayar Moshksayan, Nima Momtahan, et al.
APL Bioengineering|January 5, 2026
Development of low-cost electrical stimulation device to promote hiPSC-CM differentiation and functionalityNikhith Kalkunte, Sogu Sohn, Cody Callahan, et al.
Tissue Engineering. Part A|February 8, 2019
Temporal Impact of Substrate Anisotropy on Differentiating Cardiomyocyte Alignment and FunctionalityAlicia C B Allen, Elissa Barone, Nima Momtahan, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|April 28, 2026
Connexin 43-Enriched Vesicles Improve Synchronization in hiPSC-Derived CardiomyocytesNima Momtahan, Anna K McClain, Andrea Trementozzi, et al.
Biorxiv : the Preprint Server for Biology|June 12, 2025
Modulating Hydrogel Stiffness Through Light-Based 3D Printing to Mimic Cardiac Fibrosis and Cardiomyocyte Dysfunction Using hiPSC-Derived CellsSogu Sohn, Nima Momtahan, Lynn M Stevens, et al.
Journal of Biomedical Materials Research. Part A|October 7, 2025
Modulating Hydrogel Stiffness Through Light-Based 3D Printing to Mimic Cardiac Fibrosis and Cardiomyocyte Dysfunction Using hiPSC-Derived CellsSogu Sohn, Nima Momtahan, Lynn M Stevens, et al.
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