Part of the Engineering Commons

Works by T. P. Gharat in Engineering

2019

Characterization of Sequential Collagen-Poly(Ethylene Glycol) Diacrylate Interpenetrating Networks and Initial Assessment of Their Potential for Vascular Tissue Engineering, Dany J. Munoz Pinto, Andrea C. Jimenez-Vergara, T. P. Gharat, M. S. Hahn
Dany J. Munoz Pinto

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A Canine in Vitro Model for Evaluation of Marrow-Derived Mesenchymal Stromal Cell-Based Bone Scaffolds, T. P. Gharat, P. Diaz-Rodriguez, J. D. Erndt-Marino, Andrea C. Jimenez-Vergara, Dany J. Munoz Pinto, R. N. Bearden, S. S. Huggins, M. Grunlan, W. B. Saunders, M. S. Hahn
Dany J. Munoz Pinto

2018

A Canine in Vitro Model for Evaluation of Marrow-Derived Mesenchymal Stromal Cell-Based Bone Scaffolds, T. P. Gharat, P. Diaz-Rodriguez, J. D. Erndt-Marino, Andrea C. Jimenez-Vergara, Dany J. Munoz Pinto, R. N. Bearden, S. S. Huggins, M. Grunlan, W. B. Saunders, M. S. Hahn
Engineering Faculty Research

2015

Characterization of Sequential Collagen-Poly(Ethylene Glycol) Diacrylate Interpenetrating Networks and Initial Assessment of Their Potential for Vascular Tissue Engineering, Dany J. Munoz Pinto, Andrea C. Jimenez-Vergara, T. P. Gharat, M. S. Hahn
Engineering Faculty Research

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