A. Al-allaq et al., 2024
Publication | Publication Date | Title |
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Sasaki et al. | Barrier membranes for tissue regeneration in dentistry | |
Lee et al. | Scaffolds for bone-tissue engineering | |
Yazdanpanah et al. | 3D bioprinted scaffolds for bone tissue engineering: State-of-the-art and emerging technologies | |
Dwivedi et al. | Polycaprolactone as biomaterial for bone scaffolds: Review of literature | |
Christy et al. | Biopolymeric nanocomposite scaffolds for bone tissue engineering applications–A review | |
Perić Kačarević et al. | An introduction to bone tissue engineering | |
Iviglia et al. | Biomaterials, current strategies, and novel nano-technological approaches for periodontal regeneration | |
Xin et al. | Programmed sustained release of recombinant human bone morphogenetic protein-2 and inorganic ion composite hydrogel as artificial periosteum | |
Aytac et al. | Innovations in craniofacial bone and periodontal tissue engineering–from electrospinning to converged biofabrication | |
Khang | Handbook of intelligent scaffolds for tissue engineering and regenerative medicine | |
Polo-Corrales et al. | Scaffold design for bone regeneration | |
Xu et al. | 3D artificial bones for bone repair prepared by computed tomography-guided fused deposition modeling for bone repair | |
Kinoshita et al. | Recent developments of functional scaffolds for craniomaxillofacial bone tissue engineering applications | |
Wu et al. | Biomimetic porous scaffolds for bone tissue engineering | |
Guarino et al. | Bioactive scaffolds for bone and ligament tissue | |
Lo et al. | Studies of bone morphogenetic protein-based surgical repair | |
Hajiali et al. | Review of emerging nanotechnology in bone regeneration: progress, challenges, and perspectives | |
Li et al. | Collagen-based implants reinforced by chitin fibres in a goat shank bone defect model | |
Freeman et al. | Printing new bones: from print-and-implant devices to bioprinted bone organ precursors | |
Yu et al. | Bone regeneration of critical calvarial defect in goat model by PLGA/TCP/rhBMP-2 scaffolds prepared by low-temperature rapid-prototyping technology | |
Itoh et al. | Implantation study of a novel hydroxyapatite/collagen (HAp/col) composite into weight‐bearing sites of dogs | |
Shumilova et al. | Porous 3D implants of degradable poly‐3‐hydroxybutyrate used to enhance regeneration of rat cranial defect | |
Arjunan et al. | Future directions and requirements for tissue engineering biomaterials | |
A. Al-allaq et al. | In vivo investigations of polymers in bone tissue engineering: A review study | |
Tripathy et al. | Hybrid composite biomaterials |