Polylactic acid (PLA) is a widely used biopolymer material. However, there are disadvantages such as poor toughness, poor hydrophilicity, and poor biological activity in the application process. It was modified with polyethylene glycol (PEG) and hydroxyapatite (HA).3D printing filaments of PLA/PEG/HA with different mass ratios were prepared by melt blending. And by analyzing the mechanical properties, crystallization properties, thermal properties, rheological properties of PLA/PEG/HA filaments, the more suitable filaments for fused deposition modeling of 3D printing (FDM) were screened, and then the high precision mechanical samples and bioporous scaffolds with good biocompatibility, cell value-added and differentiation were 3D printed. Th...
In this study, it was to study the effect of plasticizer on the mechanical properties of three-dimen...
International audienceScaffolds can be defined as 3D architectures with specific features (surface p...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The goal of the work was the manufacturing of hydroxyapatite microsphere/polylactic acid (PLA) scaff...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
The relatively new and still growing field of 3D-printing has opened up the possibilities to manufac...
The relatively new and still growing field of 3D-printing has opened up the possibilities to manufac...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
The design of scaffolds to reach similar three-dimensional structures mimicking the natural and fibr...
WOS: 000440179300005Three-dimensional (3D) printing technology is a promising method for bone tissue...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
Three-dimensional (3D) printing technology is a promising method for bone tissue engineering applica...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
In this study, it was to study the effect of plasticizer on the mechanical properties of three-dimen...
International audienceScaffolds can be defined as 3D architectures with specific features (surface p...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The goal of the work was the manufacturing of hydroxyapatite microsphere/polylactic acid (PLA) scaff...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
The relatively new and still growing field of 3D-printing has opened up the possibilities to manufac...
The relatively new and still growing field of 3D-printing has opened up the possibilities to manufac...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
The design of scaffolds to reach similar three-dimensional structures mimicking the natural and fibr...
WOS: 000440179300005Three-dimensional (3D) printing technology is a promising method for bone tissue...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
Three-dimensional (3D) printing technology is a promising method for bone tissue engineering applica...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
In this study, it was to study the effect of plasticizer on the mechanical properties of three-dimen...
International audienceScaffolds can be defined as 3D architectures with specific features (surface p...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...