3D Bio-printer is said to have potential in the applications of medical studies and tissue engineering. A 3D Bio-printer could be used to print the artificial organs for organs transplant and cell tissue culture for generating new cell tissue. It could help in future medical and biological research. This paper presents the development process, i.e. working principle of Fused Deposition Modelling (FDM), mechanical, electrical and related applied software, of a 3D Bio-printer using syringe-based extruder and Core XY mechanism. Up to date, FDM is a popular technique because it is easily implemented, precise and accurate. The printed product revealed high repeativity, where (sample mean, sample standard deviation) is (0.72,0.2455) mm. The proce...
In this paper, we report a simple modification of a commercially available printer with fused deposi...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
The purpose of this project is to develop bio-models which are accurate with visual and tactile inte...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip research...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip researc...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
3D-bioprinting is a promising technology applicable in areas such as regenerative medicine or in vit...
Three-dimensional (3D) bioprinting strategies use computer-aided processes to enable automated simul...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
The Additive manufacturing 3D printing is a process of creating a three dimensional solid objects or...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
The goal of scaffold-based tissue engineering is to create synthetic replacements for natural tissue...
ABSTRACTA growing number of three-dimensional (3D)-printing processes have been applied to tissue en...
In this paper, we report a simple modification of a commercially available printer with fused deposi...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
The purpose of this project is to develop bio-models which are accurate with visual and tactile inte...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip research...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip researc...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
3D-bioprinting is a promising technology applicable in areas such as regenerative medicine or in vit...
Three-dimensional (3D) bioprinting strategies use computer-aided processes to enable automated simul...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
The Additive manufacturing 3D printing is a process of creating a three dimensional solid objects or...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
The goal of scaffold-based tissue engineering is to create synthetic replacements for natural tissue...
ABSTRACTA growing number of three-dimensional (3D)-printing processes have been applied to tissue en...
In this paper, we report a simple modification of a commercially available printer with fused deposi...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
The purpose of this project is to develop bio-models which are accurate with visual and tactile inte...