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Tissue engineering. Part C, Methods

Showing results (1041-1050 of 1,501) with videos related to

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Tissue Engineering. Part C, Methods|April 7, 2010
Application of low-frequency alternating current electric fields via interdigitated electrodes: effects on cellular viability, cytoplasmic calcium, and osteogenic differentiation of human adipose-derived stem cellsSeth D McCullen, John P McQuilling, Robert M Grossfeld, et al.
Tissue Engineering. Part C, Methods|July 12, 2012
Benefits of spine stabilization with biodegradable scaffolds in spinal cord injured ratsNuno A Silva, Rui A Sousa, Joana S Fraga, et al.
Tissue Engineering. Part C, Methods|April 28, 2021
A Preclinical Animal Model for the Study of Scaffold-Guided Breast Tissue EngineeringMatthew Cheng, Jan Janzekovic, Mina Mohseni, et al.
Tissue Engineering. Part C, Methods|May 12, 2023
Natural Polymer-Based Thin Film Strategies for Skin Regeneration in Lieu of Regenerative DentistryParth Narayan Singh, Prasanna Kumar Byram, Lopamudra Das, et al.
Tissue Engineering. Part C, Methods|September 29, 2012
Adipose tissue engineering in three-dimensional levitation tissue culture system based on magnetic nanoparticlesAlexes C Daquinag, Glauco R Souza, Mikhail G Kolonin
Tissue Engineering. Part C, Methods|June 25, 2014
BMP-2, hypoxia, and COL1A1/HtrA1 siRNAs favor neo-cartilage hyaline matrix formation in chondrocytesDavid Ollitrault, Florence Legendre, Carole Drougard, et al.
Tissue Engineering. Part C, Methods|June 27, 2014
Evaluation of the growth environment of a hydrostatic force bioreactor for preconditioning of tissue-engineered constructsYvonne Reinwald, Katherine H L Leonard, James R Henstock, et al.
Tissue Engineering. Part C, Methods|June 27, 2014
Stromal-cell-derived extracellular matrix promotes the proliferation and retains the osteogenic differentiation capacity of mesenchymal stem cells on three-dimensional scaffoldsBen Antebi, ZhiLiang Zhang, Yu Wang, et al.
Tissue Engineering. Part C, Methods|May 29, 2014
Comparison of a closed system to a standard open technique for preparing tissue-engineered vascular graftsHirotsugu Kurobe, Mark W Maxfield, Yuji Naito, et al.
Tissue Engineering. Part C, Methods|May 22, 2023
Culture of Primary Neurons from Dissociated and Cryopreserved Mouse Trigeminal GanglionMolly Tzu-Yu Lin, Isabelle Xin Yu Lee, Wei-Li Chen, et al.
Pageof 151

Showing results (1041-1050 of 1,501) with videos related to

Sort By:
Pageof 151
Tissue Engineering. Part C, Methods|April 7, 2010
Application of low-frequency alternating current electric fields via interdigitated electrodes: effects on cellular viability, cytoplasmic calcium, and osteogenic differentiation of human adipose-derived stem cellsSeth D McCullen, John P McQuilling, Robert M Grossfeld, et al.
Tissue Engineering. Part C, Methods|July 12, 2012
Benefits of spine stabilization with biodegradable scaffolds in spinal cord injured ratsNuno A Silva, Rui A Sousa, Joana S Fraga, et al.
Tissue Engineering. Part C, Methods|April 28, 2021
A Preclinical Animal Model for the Study of Scaffold-Guided Breast Tissue EngineeringMatthew Cheng, Jan Janzekovic, Mina Mohseni, et al.
Tissue Engineering. Part C, Methods|May 12, 2023
Natural Polymer-Based Thin Film Strategies for Skin Regeneration in Lieu of Regenerative DentistryParth Narayan Singh, Prasanna Kumar Byram, Lopamudra Das, et al.
Tissue Engineering. Part C, Methods|September 29, 2012
Adipose tissue engineering in three-dimensional levitation tissue culture system based on magnetic nanoparticlesAlexes C Daquinag, Glauco R Souza, Mikhail G Kolonin
Tissue Engineering. Part C, Methods|June 25, 2014
BMP-2, hypoxia, and COL1A1/HtrA1 siRNAs favor neo-cartilage hyaline matrix formation in chondrocytesDavid Ollitrault, Florence Legendre, Carole Drougard, et al.
Tissue Engineering. Part C, Methods|June 27, 2014
Evaluation of the growth environment of a hydrostatic force bioreactor for preconditioning of tissue-engineered constructsYvonne Reinwald, Katherine H L Leonard, James R Henstock, et al.
Tissue Engineering. Part C, Methods|June 27, 2014
Stromal-cell-derived extracellular matrix promotes the proliferation and retains the osteogenic differentiation capacity of mesenchymal stem cells on three-dimensional scaffoldsBen Antebi, ZhiLiang Zhang, Yu Wang, et al.
Tissue Engineering. Part C, Methods|May 29, 2014
Comparison of a closed system to a standard open technique for preparing tissue-engineered vascular graftsHirotsugu Kurobe, Mark W Maxfield, Yuji Naito, et al.
Tissue Engineering. Part C, Methods|May 22, 2023
Culture of Primary Neurons from Dissociated and Cryopreserved Mouse Trigeminal GanglionMolly Tzu-Yu Lin, Isabelle Xin Yu Lee, Wei-Li Chen, et al.
Pageof 151