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Biochemistry
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May 28, 1996
D38 is an essential part of the proton translocation pathway in bacteriorhodopsin
J Riesle, D Oesterhelt, N A Dencher, et al.
Cell and Tissue Banking
|
July 17, 2004
Effectiveness and Safety of the PEGT/PBT Copolymer Scaffold as Dermal Substitute in Scar Reconstruction Wounds (Feasibility Trial)
I Mensik, E N Lamme, J Riesle, et al.
Journal of Materials Science. Materials in Medicine
|
September 7, 2004
Static and dynamic fibroblast seeding and cultivation in porous PEO/PBT scaffolds
Y L Xiao, J Riesle, C A Van Blitterswijk
Biophysical Journal
|
August 1, 1997
Spin-labeling studies of the conformational changes in the vicinity of D36, D38, T46, and E161 of bacteriorhodopsin during the photocycle
T Rink, J Riesle, D Oesterhelt, et al.
Nature
|
August 4, 1994
Proton migration along the membrane surface and retarded surface to bulk transfer
J Heberle, J Riesle, G Thiedemann, et al.
Biomaterials
|
October 22, 2003
Expansion of human nasal chondrocytes on macroporous microcarriers enhances redifferentiation
J Malda, E Kreijveld, J S Temenoff, et al.
Journal of Cellular Biochemistry
|
November 27, 1998
Collagen in tissue-engineered cartilage: types, structure, and crosslinks
J Riesle, A P Hollander, R Langer, et al.
Tissue Engineering
|
November 25, 2003
Expansion of bovine chondrocytes on microcarriers enhances redifferentiation
J Malda, C A van Blitterswijk, M Grojec, et al.
Journal of Materials Science. Materials in Medicine
|
September 7, 2004
Tissue engineering of dermal substitutes based on porous PEGT/PBT copolymer scaffolds: comparison of culture conditions
H J Wang, M Bertrand-De Haas, J Riesle, et al.
Biomaterials
|
March 16, 2013
The effect of scaffold-cell entrapment capacity and physico-chemical properties on cartilage regeneration
J A A Hendriks, L Moroni, J Riesle, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 23) with videos related to
Sort By:
Page
of 3
Biochemistry
|
May 28, 1996
D38 is an essential part of the proton translocation pathway in bacteriorhodopsin
J Riesle, D Oesterhelt, N A Dencher, et al.
Cell and Tissue Banking
|
July 17, 2004
Effectiveness and Safety of the PEGT/PBT Copolymer Scaffold as Dermal Substitute in Scar Reconstruction Wounds (Feasibility Trial)
I Mensik, E N Lamme, J Riesle, et al.
Journal of Materials Science. Materials in Medicine
|
September 7, 2004
Static and dynamic fibroblast seeding and cultivation in porous PEO/PBT scaffolds
Y L Xiao, J Riesle, C A Van Blitterswijk
Biophysical Journal
|
August 1, 1997
Spin-labeling studies of the conformational changes in the vicinity of D36, D38, T46, and E161 of bacteriorhodopsin during the photocycle
T Rink, J Riesle, D Oesterhelt, et al.
Nature
|
August 4, 1994
Proton migration along the membrane surface and retarded surface to bulk transfer
J Heberle, J Riesle, G Thiedemann, et al.
Biomaterials
|
October 22, 2003
Expansion of human nasal chondrocytes on macroporous microcarriers enhances redifferentiation
J Malda, E Kreijveld, J S Temenoff, et al.
Journal of Cellular Biochemistry
|
November 27, 1998
Collagen in tissue-engineered cartilage: types, structure, and crosslinks
J Riesle, A P Hollander, R Langer, et al.
Tissue Engineering
|
November 25, 2003
Expansion of bovine chondrocytes on microcarriers enhances redifferentiation
J Malda, C A van Blitterswijk, M Grojec, et al.
Journal of Materials Science. Materials in Medicine
|
September 7, 2004
Tissue engineering of dermal substitutes based on porous PEGT/PBT copolymer scaffolds: comparison of culture conditions
H J Wang, M Bertrand-De Haas, J Riesle, et al.
Biomaterials
|
March 16, 2013
The effect of scaffold-cell entrapment capacity and physico-chemical properties on cartilage regeneration
J A A Hendriks, L Moroni, J Riesle, et al.
Page
of 3