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Analytical Chemistry|September 14, 2016
Biomimetic Cardiac Tissue Model Enables the Adaption of Human Induced Pluripotent Stem Cell Cardiomyocytes to Physiological Hemodynamic LoadsAaron J Rogers, Vladimir G Fast, Palaniappan SethuIEEE Transactions on Bio-Medical Engineering|March 21, 2019
Cardiac Tissue Chips (CTCs) for Modeling Cardiovascular DiseaseAaron J Rogers, Jessica M Miller, Ramaswamy Kannappan, et al.Life Sciences in Space Research|November 9, 2024
3D bioprinting meniscus tissue onboard the International Space StationGeorge J Klarmann, Aaron J Rogers, Kristin H Gilchrist, et al.Analytica Chimica Acta|February 25, 2018
Review: Microfluidics technologies for blood-based cancer liquid biopsiesYuxi Sun, Thomas A Haglund, Aaron J Rogers, et al.Cells, Tissues, Organs|November 23, 2018
Growing Human Parathyroids in a Microphysiological System: A Novel Approach to Understanding and Developing New Treatments for HyperparathyroidismPalaniappan Sethu, Thomas A Haglund, Aaron J Rogers, et al.Analytical Chemistry|October 4, 2014
Hyperglycemic arterial disturbed flow niche as an in vitro model of atherosclerosisPhani K Patibandla, Aaron J Rogers, Guruprasad A Giridharan, et al.Cells, Tissues, Organs|March 7, 2019
Hemodynamic Stimulation Using the Biomimetic Cardiac Tissue Model (BCTM) Enhances Maturation of Human Induced Pluripotent Stem Cell-Derived CardiomyocytesAaron J Rogers, Ramaswamy Kannappan, Hadil Abukhalifeh, et al.Redox Biology|January 15, 2019
Mitoquinone ameliorates pressure overload-induced cardiac fibrosis and left ventricular dysfunction in miceKah Yong Goh, Li He, Jiajia Song, et al.Pageof 1