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Tissue engineering. Part A

Showing results (271-280 of 3,462) with videos related to

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Tissue Engineering. Part A|September 10, 2011
Low oxygen concentrations impair tissue development in tissue-engineered cardiovascular constructsMarijke A A van Vlimmeren, Anita Driessen-Mol, Cees W J Oomens, et al.
Tissue Engineering. Part A|September 10, 2011
Human adipose tissue extract induces angiogenesis and adipogenesis in vitroJertta-Riina Sarkanen, Ville Kaila, Bettina Mannerström, et al.
Tissue Engineering. Part A|August 6, 2011
Fibroblast growth factor-2-overexpressing myoblasts encapsulated in alginate spheres increase proliferation, reduce apoptosis, induce adipogenesis, and enhance regeneration following skeletal muscle injury in ratsIoannis Stratos, Henning Madry, Robert Rotter, et al.
Tissue Engineering. Part A|August 6, 2011
Continuous gradients of material composition and growth factors for effective regeneration of the osteochondral interfaceNeethu Mohan, Nathan H Dormer, Kenneth L Caldwell, et al.
Tissue Engineering. Part A|August 9, 2011
Positive effect on bone fusion by the combination of platelet-rich plasma and a gelatin β-tricalcium phosphate sponge: a study using a posterolateral fusion model of lumbar vertebrae in ratsShin-ichi Okamoto, Takumi Ikeda, Kazuhide Sawamura, et al.
Tissue Engineering. Part A|July 21, 2011
Novel soft alginate hydrogel strongly supports neurite growth and protects neurons against oxidative stressMarina Matyash, Florian Despang, Rakesh Mandal, et al.
Tissue Engineering. Part A|July 9, 2011
The maturity of tissue-engineered cartilage in vitro affects the repairability for osteochondral defectCheng Zhe Jin, Jae-Ho Cho, Byung Hyune Choi, et al.
Tissue Engineering. Part A|September 24, 2011
Wound contraction is significantly reduced by the use of microcarriers to deliver keratinocytes and fibroblasts in an in vivo pig model of wound repair and regenerationMohamed Eldardiri, Yella Martin, Judy Roxburgh, et al.
Tissue Engineering. Part A|October 21, 2011
Adipose tissue engineering using injectable, oxidized alginate hydrogelsWoo Seob Kim, David J Mooney, Praveen R Arany, et al.
Tissue Engineering. Part A|October 21, 2011
Human flexor tendon tissue engineering: decellularization of human flexor tendons reduces immunogenicity in vivoShyam S Raghavan, Colin Y L Woon, Armin Kraus, et al.
Pageof 347

Showing results (271-280 of 3,462) with videos related to

Sort By:
Pageof 347
Tissue Engineering. Part A|September 10, 2011
Low oxygen concentrations impair tissue development in tissue-engineered cardiovascular constructsMarijke A A van Vlimmeren, Anita Driessen-Mol, Cees W J Oomens, et al.
Tissue Engineering. Part A|September 10, 2011
Human adipose tissue extract induces angiogenesis and adipogenesis in vitroJertta-Riina Sarkanen, Ville Kaila, Bettina Mannerström, et al.
Tissue Engineering. Part A|August 6, 2011
Fibroblast growth factor-2-overexpressing myoblasts encapsulated in alginate spheres increase proliferation, reduce apoptosis, induce adipogenesis, and enhance regeneration following skeletal muscle injury in ratsIoannis Stratos, Henning Madry, Robert Rotter, et al.
Tissue Engineering. Part A|August 6, 2011
Continuous gradients of material composition and growth factors for effective regeneration of the osteochondral interfaceNeethu Mohan, Nathan H Dormer, Kenneth L Caldwell, et al.
Tissue Engineering. Part A|August 9, 2011
Positive effect on bone fusion by the combination of platelet-rich plasma and a gelatin β-tricalcium phosphate sponge: a study using a posterolateral fusion model of lumbar vertebrae in ratsShin-ichi Okamoto, Takumi Ikeda, Kazuhide Sawamura, et al.
Tissue Engineering. Part A|July 21, 2011
Novel soft alginate hydrogel strongly supports neurite growth and protects neurons against oxidative stressMarina Matyash, Florian Despang, Rakesh Mandal, et al.
Tissue Engineering. Part A|July 9, 2011
The maturity of tissue-engineered cartilage in vitro affects the repairability for osteochondral defectCheng Zhe Jin, Jae-Ho Cho, Byung Hyune Choi, et al.
Tissue Engineering. Part A|September 24, 2011
Wound contraction is significantly reduced by the use of microcarriers to deliver keratinocytes and fibroblasts in an in vivo pig model of wound repair and regenerationMohamed Eldardiri, Yella Martin, Judy Roxburgh, et al.
Tissue Engineering. Part A|October 21, 2011
Adipose tissue engineering using injectable, oxidized alginate hydrogelsWoo Seob Kim, David J Mooney, Praveen R Arany, et al.
Tissue Engineering. Part A|October 21, 2011
Human flexor tendon tissue engineering: decellularization of human flexor tendons reduces immunogenicity in vivoShyam S Raghavan, Colin Y L Woon, Armin Kraus, et al.
Pageof 347