A critical review on the 3D bioprinting in large bone defects regeneration

Author:

Shahrezaie Mostafa,Zamanian AliORCID,Sahranavard Melika,Shahrezaee Mohammad HosseinORCID

Publisher

Elsevier BV

Subject

Computer Science Applications,Biomedical Engineering,Biotechnology

Reference139 articles.

1. The bone regeneration capacity of 3D-printed templates in calvarial defect models: a systematic review and meta-analysis;Hassan;Acta Biomater.,2019

2. A porous polymeric–hydroxyapatite scaffold used for femur fractures treatment: fabrication, analysis, and simulation;Esmaeili;Eur. J. Orthop. Surg. Traumatol.,2020

3. Vascularization strategies in bone tissue engineering;Simunovic;Cells,2021

4. Fabrication of functional and biodegradable scaffolds using nucleated poly(4-hydroxybutyrate) via 3D printing for bone tissue engineering;Wang;Polym. Test.,2023

5. Development and investigation of novel alginate-hyaluronic acid bone fillers using freeze drying technique for orthopedic field;Jamnezhad;Nanomedicine Res. J.,2020

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