Tissue engineering (TE) aims at producing patient-specific bio- logical substitutes in an attempt to repair, replace and regener- ate damaged tissues or organs in order to improve the current state of clinical treatments. A three-dimensional substrate, the scaffold, is a key aspect to promote cell organization to form a tissue. Recently, rapid prototyping (RP) technologies have been successfully used to fabricate complex scaffolds, thanks to the ability to create highly reproducible architecture and composi- tional variation across the entire structure, due to their precise controlled computer driven fabrication. The drawback of most of the fabrication principles applied in the RP processes is the requirement of particular conditions (e.g.,...
This entry provides an overview of rapid prototyping methods for biomaterial fabrication with the ai...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
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...
Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aid...
In the current review, we aim to give an overview of different rapid prototyping (RP) methods which ...
Over the past decades, solid freeform fabrication (SFF) has emerged as the main technology for the p...
The construction of biomaterial scaffolds for cell seeding is now seen as the most common approach f...
This project focused on creating the design and modeling of suitable scaffolds for tissue engineerin...
One of the key elements involved in the tissue engineering process is the scaffold which serves as a...
Tissue Engineering and Regenerative Medicine (TERM) aims at the development of biological substitute...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
Introduction Tissue engineering (TE) is a multidisciplinary field that combines the principles of en...
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...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
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...
Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aid...
In the current review, we aim to give an overview of different rapid prototyping (RP) methods which ...
Over the past decades, solid freeform fabrication (SFF) has emerged as the main technology for the p...
The construction of biomaterial scaffolds for cell seeding is now seen as the most common approach f...
This project focused on creating the design and modeling of suitable scaffolds for tissue engineerin...
One of the key elements involved in the tissue engineering process is the scaffold which serves as a...
Tissue Engineering and Regenerative Medicine (TERM) aims at the development of biological substitute...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
Introduction Tissue engineering (TE) is a multidisciplinary field that combines the principles of en...
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...
This research paper addresses the issue of developing an efficient methodology to design and manufac...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...