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Sebastien Callens

Publications

  • Emergent collective organization of bone cells in complex curvature fields
  • The local and global geometry of trabecular bone
  • Decoupling Minimal Surface Metamaterial Properties Through Multi‐Material Hyperbolic Tilings
  • Microfibrous Scaffolds Guide Stem Cell Lumenogenesis and Brain Organoid Engineering
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite™ to deliver BMP-2 for bone tissue engineering – progression throughin vitro, chorioallantoic membrane assay and murine subcutaneous model validation.
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite™ to deliver BMP-2 for bone tissue engineering – progression throughin vitro, chorioallantoic membrane assay and murine subcutaneous model validation
  • Bioactive coatings on 3D printed polycaprolactone scaffolds for bone regeneration: a novel murine femur defect model for examination of the biomaterial capacity for repair.
  • Bioactive coatings on 3D printed polycaprolactone scaffolds for bone regeneration: a novel murine femur defect model for examination of the biomaterial capacity for repair
  • Curvature tuning through defect-based 4D printing
  • Magnetically driven formation of 3D freestanding soft bioscaffolds
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite®to deliver BMP-2 in an ovine femoral condyle defect model
  • From flat sheets to curved geometries: Origami and kirigami approaches
  • Substrate curvature as a cue to guide spatiotemporal cell and tissue organization
  • Hyperbolic origami-inspired folding of triply periodic minimal surface structures
  • Two-matrix composites: Carbon fiber micropultrusions embedded in flexible epoxy matrices
  • Curvature Induced by Deflection in Thick Meta‐Plates
  • Merging strut-based and minimal surface meta-biomaterials: Decoupling surface area from mechanical properties
  • Using Laponite to Deliver BMP‐2 for Bone Tissue Engineering – In Vitro, Chorioallantoic Membrane Assay and Murine Subcutaneous Model Validation
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite® to deliver BMP-2 in an ovine femoral condyle defect model
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite™ to deliver BMP-2 for bone tissue engineering - progression through in vitro, chorioallantoic membrane assay and murine subcutaneous model validation
  • Using Laponite to Deliver BMP-2 for Bone Tissue Engineering – In Vitro, Chorioallantoic Membrane Assay and Murine Subcutaneous Model Validation
  • Bioactive coatings on 3D printed scaffolds for bone regeneration: Use of Laponite® to deliver BMP-2 in an ovine femoral condyle defect model
  • Decoupling minimal surface metamaterial properties through multi-material hyperbolic tilings
  • Geometric control of bone tissue growth and organization
  • Tissue growth as a mechanism for collagen fiber alignment in articular cartilage

Sebastien Callens's public data