The technologies employed for the preparation of conventional tissue engineering scaffolds restrict the materials choice and the extent to which the architecture can be designed. Here we show the versatility of stereolithography with respect to materials and freedom of design. Porous scaffolds are designed with computer software and built with either a poly(d,l-lactide)-based resin or a poly(d,l-lactide-co-ε-caprolactone)-based resin. Characterisation of the scaffolds by micro-computed tomography shows excellent reproduction of the designs. The mechanical properties are evaluated in compression, and show good agreement with finite element predictions. The mechanical properties of scaffolds can be controlled by the combination of material an...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
For the fabrication of tissue engineering scaffolds, the intended tissue formation process imposes r...
Rapid prototyping techniques such as stereolithography allow for building designed tissue engineerin...
Tissue engineering, which is the study of generating biological substitutes to restore or replace ti...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
For the fabrication of tissue engineering scaffolds, the intended tissue formation process imposes r...
Rapid prototyping techniques such as stereolithography allow for building designed tissue engineerin...
Tissue engineering, which is the study of generating biological substitutes to restore or replace ti...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
Today, tissue engineers are attempting to engineer virtually every human tissue. Potential tissue-en...