Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aided design (CAD) drawings and manufacture automatically three-dimensional objects layer-by-layer according to the virtual design. The utilization of RP in tissue engineering enables the production of three-dimensional scaffolds with complex geometries and very fine structures. Adding micro- and nanometer details into the scaffolds improves the mechanical properties of the scaffold and ensures better cell adhesion to the scaffold surface. Thus, tissue engineering constructs can be customized according to the data acquired from the medical scans to match the each patient's individual needs. In addition RP enables the control of the scaffold poro...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
The purpose of this project is to implement the use of rapid prototyping technology as a great value...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aid...
Rapid prototyping (RP) techniques are a group of advanced manufacturing processes that can produce c...
Tissue engineering (TE) is an important emerging area in biomedical engineering for creating biologi...
Tissue engineering (TE) aims at producing patient-specific bio- logical substitutes in an attempt to...
In the current review, we aim to give an overview of different rapid prototyping (RP) methods which ...
This project focused on creating the design and modeling of suitable scaffolds for tissue engineerin...
The majority of strategies used in tissue engineering (TE) employ a scaffold, which is used to guide...
This entry provides an overview of rapid prototyping methods for biomaterial fabrication with the ai...
The construction of biomaterial scaffolds for cell seeding is now seen as the most common approach f...
Biomaterials rapid prototyping (RP), recently known as additive manufacturing (AM), has appeared as ...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
The combined use of hydrogels and rapid prototyping techniques has been an exciting route in develop...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
The purpose of this project is to implement the use of rapid prototyping technology as a great value...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aid...
Rapid prototyping (RP) techniques are a group of advanced manufacturing processes that can produce c...
Tissue engineering (TE) is an important emerging area in biomedical engineering for creating biologi...
Tissue engineering (TE) aims at producing patient-specific bio- logical substitutes in an attempt to...
In the current review, we aim to give an overview of different rapid prototyping (RP) methods which ...
This project focused on creating the design and modeling of suitable scaffolds for tissue engineerin...
The majority of strategies used in tissue engineering (TE) employ a scaffold, which is used to guide...
This entry provides an overview of rapid prototyping methods for biomaterial fabrication with the ai...
The construction of biomaterial scaffolds for cell seeding is now seen as the most common approach f...
Biomaterials rapid prototyping (RP), recently known as additive manufacturing (AM), has appeared as ...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
The combined use of hydrogels and rapid prototyping techniques has been an exciting route in develop...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
The purpose of this project is to implement the use of rapid prototyping technology as a great value...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...