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Vladimir S Komlev

Showing results (1-10 of 44) with videos related to

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International Journal of Fracture|April 10, 2020
Strength increase during ceramic biomaterial-induced bone regeneration: a micromechanical studyStefan Scheiner, Vladimir S Komlev, Christian Hellmich
Biomaterials|July 9, 2002
A method to fabricate porous spherical hydroxyapatite granules intended for time-controlled drug releaseVladimir S Komlev, Serguei M Barinov, Elena V Koplik
Frontiers in Physiology|October 7, 2016
Multiscale Mathematical Modeling in Dental Tissue Engineering: Toward Computer-Aided Design of a Regenerative System Based on Hydroxyapatite Granules, Focussing on Early and Mid-Term Stiffness RecoveryStefan Scheiner, Vladimir S Komlev, Alexey N Gurin, et al.
Tissue Engineering. Part C, Methods|February 24, 2009
X-ray synchrotron radiation pseudo-holotomography as a new imaging technique to investigate angio- and microvasculogenesis with no usage of contrast agentsVladimir S Komlev, Maddalena Mastrogiacomo, Francoise Peyrin, et al.
Journal of Tissue Engineering and Regenerative Medicine|June 26, 2012
Extracellular matrix deposition and scaffold biodegradation in an in vitro three-dimensional model of bone by X-ray computed microtomographyAlessandra Ruggiu, Federico Tortelli, Vladimir S Komlev, et al.
Journal of Biomechanics|February 3, 2012
Micro CT-based multiscale elasticity of double-porous (pre-cracked) hydroxyapatite granules for regenerative medicineAlexander Dejaco, Vladimir S Komlev, Jakub Jaroszewicz, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|July 21, 2004
High release of antibiotic from a novel hydroxyapatite with bimodal pore size distributionMasahiro Hasegawa, Akihiro Sudo, Vladimir S Komlev, et al.
ACS Applied Materials & Interfaces|October 24, 2012
Structural study of octacalcium phosphate bone cement conversion in vitroMarco Fosca, Vladimir S Komlev, Alexander Yu Fedotov, et al.
Biomedical Materials (Bristol, England)|October 4, 2017
Fibrinogen-modified sodium alginate as a scaffold material for skin tissue engineeringElena V Solovieva, Alexander Yu Fedotov, Vasily E Mamonov, et al.
Biophysical Reviews|January 30, 2026
Calcium and magnesium phosphates bone cements for biovisualization and theranostic applicationsMargarita A Goldberg, Polina A Krokhicheva, Margarita A Sadovnikova, et al.
Pageof 5

Showing results (1-10 of 44) with videos related to

Sort By:
Pageof 5
International Journal of Fracture|April 10, 2020
Strength increase during ceramic biomaterial-induced bone regeneration: a micromechanical studyStefan Scheiner, Vladimir S Komlev, Christian Hellmich
Biomaterials|July 9, 2002
A method to fabricate porous spherical hydroxyapatite granules intended for time-controlled drug releaseVladimir S Komlev, Serguei M Barinov, Elena V Koplik
Frontiers in Physiology|October 7, 2016
Multiscale Mathematical Modeling in Dental Tissue Engineering: Toward Computer-Aided Design of a Regenerative System Based on Hydroxyapatite Granules, Focussing on Early and Mid-Term Stiffness RecoveryStefan Scheiner, Vladimir S Komlev, Alexey N Gurin, et al.
Tissue Engineering. Part C, Methods|February 24, 2009
X-ray synchrotron radiation pseudo-holotomography as a new imaging technique to investigate angio- and microvasculogenesis with no usage of contrast agentsVladimir S Komlev, Maddalena Mastrogiacomo, Francoise Peyrin, et al.
Journal of Tissue Engineering and Regenerative Medicine|June 26, 2012
Extracellular matrix deposition and scaffold biodegradation in an in vitro three-dimensional model of bone by X-ray computed microtomographyAlessandra Ruggiu, Federico Tortelli, Vladimir S Komlev, et al.
Journal of Biomechanics|February 3, 2012
Micro CT-based multiscale elasticity of double-porous (pre-cracked) hydroxyapatite granules for regenerative medicineAlexander Dejaco, Vladimir S Komlev, Jakub Jaroszewicz, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|July 21, 2004
High release of antibiotic from a novel hydroxyapatite with bimodal pore size distributionMasahiro Hasegawa, Akihiro Sudo, Vladimir S Komlev, et al.
ACS Applied Materials & Interfaces|October 24, 2012
Structural study of octacalcium phosphate bone cement conversion in vitroMarco Fosca, Vladimir S Komlev, Alexander Yu Fedotov, et al.
Biomedical Materials (Bristol, England)|October 4, 2017
Fibrinogen-modified sodium alginate as a scaffold material for skin tissue engineeringElena V Solovieva, Alexander Yu Fedotov, Vasily E Mamonov, et al.
Biophysical Reviews|January 30, 2026
Calcium and magnesium phosphates bone cements for biovisualization and theranostic applicationsMargarita A Goldberg, Polina A Krokhicheva, Margarita A Sadovnikova, et al.
Pageof 5