Items where Author is "Sukhavasi, Rushi C."
Hardy, John G. and Sukhavasi, Rushi C. and Aguilar, David and Villancio-Wolter, Maria K. and Mouser, David J. and Geissler, Sydney A. and Nguy, Lindsey and Chow, Jacqueline K. and Kaplan, David L. and Schmidt, Christine E. (2015) Electrical stimulation of human mesenchymal stem cells on biomineralized conducting polymers enhances their differentiation towards osteogenic outcomes. Journal of Materials Chemistry B, 3 (41). pp. 8059-8064. ISSN 2050-7518
Hardy, John G. and Sukhavasi, Rushi C. and Aguilar Jr., David and Villancio-Wolter, Maria and Mouser, David J. and Geissler, Sydney and Nguy, Lindsey and Chow, Jacqueline K. and Kaplan, David L. and Schmidt, Christine E. (2015) Electrical stimulation of human mesenchymal stem cells on biomineralized conducting polymers enhances their differentiation towards osteogenic outcomes. Journal of Materials Chemistry B, 3 (41). pp. 8059-8064. ISSN 2050-750X
Hardy, John G. and Geissler, Sydney A. and Aguilar Jr., David and Villancio-Wolter, Maria K. and Mouser, David J. and Sukhavasi, Rushi C. and Cornelison, R. Chase and Tien, Lee W. and Preda, R. Carmen and Hayden, Rebecca S. and Chow, Jacqueline K. and Nguy, Lindsey and Kaplan, David L. and Schmidt, Christine E. (2015) Instructive conductive 3D silk foam-based bone tissue scaffolds enable electrical stimulation of stem cells for enhanced osteogenic differentiation. Macromolecular Bioscience, 15 (11). pp. 1490-1496. ISSN 1616-5187
Hardy, John and Khaing, Zin and Xin, Shangjing and Tien, Lee and Ghezzi, Chiara and Mouser, David and Sukhavasi, Rushi C. and Preda, Rucsanda and Gil, Eun and Kaplan, David L. and Schmidt, Christine E (2015) Into the groove : instructive conductive silk films with topological guidance cues. Journal of Biomaterials Science, Polymer Edition, 26 (17). pp. 1327-1342. ISSN 0920-5063
Hardy, John G. and Cornelison, R. Chase and Sukhavasi, Rushi C. and Saballos, Richard J. and Vu, Philip and Kaplan, David L. and Schmidt, Christine E. (2015) Electroactive tissue scaffolds with aligned pores as instructive platforms for biomimetic tissue engineering. Bioengineering, 2 (1). pp. 15-34. ISSN 2306-5354