This paper presents a comprehensive effort to develop and analyze first-of-its-kind design-specific and bioactive piezoelectric scaffolds for treating orthopedic defects. The study has three major highlights. First, this is one of the first studies that utilize extrusion-based 3D printing to develop design-specific macroporous piezoelectric scaffolds for treating bone defects. The scaffolds with controlled pore size and architecture were synthesized based on unique composite formulations containing polycaprolactone (PCL) and micron-sized barium titanate (BaTiO3) particles. Second, the bioactive PCL-BaTiO3 piezoelectric composite formulations were explicitly developed in the form of uniform diameter filaments, which served as feedstock mater...
Bone regeneration remains a critical concern across diverse medical disciplines, because it is a com...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
The design of the bone scaffolds changes and develops with the developing technology and production ...
This paper presents a comprehensive effort to develop and analyze first-of-its-kind design-specific ...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
The prevalence of large bone defects is still a major problem in surgical clinics. It is, thus, not ...
Piezoelectric ceramics, such as BaTiO3, have gained considerable attention in bone tissue engineerin...
The incidence of bone disorders worldwide is increasing and new and more effective strategies for bo...
In order to promote bone healing, new generations of biomaterials are under development. These bioma...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
Endogenous bioelectrical signals are one of the most relevant cues to determine tissue function in e...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
From PubMed via Jisc Publications RouterHistory: received 2021-04-02, revised 2021-05-09, accepted 2...
With the worldwide bone disorders and conditions trended steeply upward, the demands for engineering...
Electrical and ultrasonic stimulation have both shown great potential for promoting cell proliferati...
Bone regeneration remains a critical concern across diverse medical disciplines, because it is a com...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
The design of the bone scaffolds changes and develops with the developing technology and production ...
This paper presents a comprehensive effort to develop and analyze first-of-its-kind design-specific ...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
The prevalence of large bone defects is still a major problem in surgical clinics. It is, thus, not ...
Piezoelectric ceramics, such as BaTiO3, have gained considerable attention in bone tissue engineerin...
The incidence of bone disorders worldwide is increasing and new and more effective strategies for bo...
In order to promote bone healing, new generations of biomaterials are under development. These bioma...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
Endogenous bioelectrical signals are one of the most relevant cues to determine tissue function in e...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
From PubMed via Jisc Publications RouterHistory: received 2021-04-02, revised 2021-05-09, accepted 2...
With the worldwide bone disorders and conditions trended steeply upward, the demands for engineering...
Electrical and ultrasonic stimulation have both shown great potential for promoting cell proliferati...
Bone regeneration remains a critical concern across diverse medical disciplines, because it is a com...
Bones have been shown to exhibit piezoelectric properties, generating electrical potential upon mech...
The design of the bone scaffolds changes and develops with the developing technology and production ...