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Methods in Molecular Biology (Clifton, N.J.)|May 26, 2022
Quantifying Propagation Velocity from Engineered Cardiac Tissues with High-Speed Fluorescence Microscopy and Automated Analysis SoftwareAndrew P Petersen, Megan L McCainJournal of Molecular and Cellular Cardiology|October 10, 2020
Mitochondrial architecture in cardiac myocytes depends on cell shape and matrix rigidityDavi M Lyra-Leite, Andrew P Petersen, Nethika R Ariyasinghe, et al.Lab on a Chip|December 25, 2019
Extended culture and imaging of normal and regenerating adult zebrafish hearts in a fluidic deviceJoycelyn K Yip, Michael Harrison, Jessi Villafuerte, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|March 3, 2020
Regulation of calcium dynamics and propagation velocity by tissue microstructure in engineered strands of cardiac tissueAndrew P Petersen, Nathan Cho, Davi M Lyra-Leite, et al.Cellular and Molecular Bioengineering|November 14, 2019
Microenvironmental Modulation of Calcium Wave Propagation Velocity in Engineered Cardiac TissuesAndrew P Petersen, Davi M Lyra-Leite, Nethika R Ariyasinghe, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|July 21, 2017
Engineering micromyocardium to delineate cellular and extracellular regulation of myocardial tissue contractilityNethika R Ariyasinghe, Caitlin H Reck, Alyssa A Viscio, et al.Acta Biomaterialia|August 12, 2019
Matrix-guided control of mitochondrial function in cardiac myocytesDavi M Lyra-Leite, Allen M Andres, Nathan Cho, et al.American Journal of Physiology. Heart and Circulatory Physiology|July 23, 2017
Mitochondrial function in engineered cardiac tissues is regulated by extracellular matrix elasticity and tissue alignmentDavi M Lyra-Leite, Allen M Andres, Andrew P Petersen, et al.APL Bioengineering|August 16, 2023
User-friendly microfluidic system reveals native-like morphological and transcriptomic phenotypes induced by shear stress in proximal tubule epitheliumNatalie N Khalil, Andrew P Petersen, Cheng J Song, et al.Lab on a Chip|January 13, 2021
Contact photolithography-free integration of patterned and semi-transparent indium tin oxide stimulation electrodes into polydimethylsiloxane-based heart-on-a-chip devices for streamlining physiological recordingsJoycelyn K Yip, Debarghya Sarkar, Andrew P Petersen, et al.Pageof 1