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Ekaterina Maevskaia

Showing results (1-10 of 7) with videos related to

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Tissue Engineering. Part A|May 22, 2023
Triply Periodic Minimal Surface-Based Scaffolds for Bone Tissue Engineering: A Mechanical, <i>In Vitro</i> and <i>In Vivo</i> StudyEkaterina Maevskaia, Julien Guerrero, Chafik Ghayor, et al.
Materials (Basel, Switzerland)|June 19, 2024
TPMS Microarchitectures for Vertical Bone Augmentation and Osteoconduction: An In Vivo StudyEkaterina Maevskaia, Chafik Ghayor, Indranil Bhattacharya, et al.
International Journal of Molecular Sciences|April 13, 2024
Functionalization of Ceramic Scaffolds with Exosomes from Bone Marrow Mesenchymal Stromal Cells for Bone Tissue EngineeringEkaterina Maevskaia, Julien Guerrero, Chafik Ghayor, et al.
International Journal of Molecular Sciences|March 29, 2023
Influence of Scaffold Microarchitecture on Angiogenesis and Regulation of Cell Differentiation during the Early Phase of Bone Healing: A Transcriptomics and Histological AnalysisJulien Guerrero, Ekaterina Maevskaia, Chafik Ghayor, et al.
Journal of Functional Biomaterials|July 26, 2024
Optimizing Filament-Based TCP Scaffold Design for Osteoconduction and Bone Augmentation: Insights from In Vivo Rabbit ModelsJulien Guerrero, Ekaterina Maevskaia, Chafik Ghayor, et al.
Acta Biomaterialia|May 23, 2025
Mineralized osteoblast-derived exosomes and 3D-printed ceramic-based scaffolds for enhanced bone healing: A preclinical explorationJulien Guerrero, Ekaterina Maevskaia, Pablo Pfister, et al.
3D Printing and Additive Manufacturing|October 27, 2023
Three-Dimensional Printed Hydroxyapatite Bone Substitutes Designed by a Novel Periodic Minimal Surface Algorithm Are Highly OsteoconductiveEkaterina Maevskaia, Nupur Khera, Chafik Ghayor, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Tissue Engineering. Part A|May 22, 2023
Triply Periodic Minimal Surface-Based Scaffolds for Bone Tissue Engineering: A Mechanical, <i>In Vitro</i> and <i>In Vivo</i> StudyEkaterina Maevskaia, Julien Guerrero, Chafik Ghayor, et al.
Materials (Basel, Switzerland)|June 19, 2024
TPMS Microarchitectures for Vertical Bone Augmentation and Osteoconduction: An In Vivo StudyEkaterina Maevskaia, Chafik Ghayor, Indranil Bhattacharya, et al.
International Journal of Molecular Sciences|April 13, 2024
Functionalization of Ceramic Scaffolds with Exosomes from Bone Marrow Mesenchymal Stromal Cells for Bone Tissue EngineeringEkaterina Maevskaia, Julien Guerrero, Chafik Ghayor, et al.
International Journal of Molecular Sciences|March 29, 2023
Influence of Scaffold Microarchitecture on Angiogenesis and Regulation of Cell Differentiation during the Early Phase of Bone Healing: A Transcriptomics and Histological AnalysisJulien Guerrero, Ekaterina Maevskaia, Chafik Ghayor, et al.
Journal of Functional Biomaterials|July 26, 2024
Optimizing Filament-Based TCP Scaffold Design for Osteoconduction and Bone Augmentation: Insights from In Vivo Rabbit ModelsJulien Guerrero, Ekaterina Maevskaia, Chafik Ghayor, et al.
Acta Biomaterialia|May 23, 2025
Mineralized osteoblast-derived exosomes and 3D-printed ceramic-based scaffolds for enhanced bone healing: A preclinical explorationJulien Guerrero, Ekaterina Maevskaia, Pablo Pfister, et al.
3D Printing and Additive Manufacturing|October 27, 2023
Three-Dimensional Printed Hydroxyapatite Bone Substitutes Designed by a Novel Periodic Minimal Surface Algorithm Are Highly OsteoconductiveEkaterina Maevskaia, Nupur Khera, Chafik Ghayor, et al.
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