Mould for the creation of tissue engineered skeletal muscle in 100uL construct volumes. To be 3D printed using Laser Sintering (LS).<br
Complex three dimensional parts can be manufactured directly from CAD data using rapid prototyping ...
This project is designed to investigate the possibility of using a combination of methods to fabrica...
published_or_final_versionabstractMechanical EngineeringDoctoralDoctor of Philosoph
Mould for the creation of tissue engineered skeletal muscle in 100uL construct volumes. To be 3D pri...
Mould for the creation of tissue engineered skeletal muscle in 50uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 25uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 250uL construct volumes. To be 3D pri...
Mould for the creation of tissue engineered skeletal muscle in 50uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 500uL construct volumes. To be 3D pri...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Laser sintering (LS) utilises a laser to sinter powder particles. A volumetric model is sliced and p...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Complex three dimensional parts can be manufactured directly from CAD data using rapid prototyping p...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
The transition from 2D to 3D engineered tissue cultures is changing the way biologists can perform i...
Complex three dimensional parts can be manufactured directly from CAD data using rapid prototyping ...
This project is designed to investigate the possibility of using a combination of methods to fabrica...
published_or_final_versionabstractMechanical EngineeringDoctoralDoctor of Philosoph
Mould for the creation of tissue engineered skeletal muscle in 100uL construct volumes. To be 3D pri...
Mould for the creation of tissue engineered skeletal muscle in 50uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 25uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 250uL construct volumes. To be 3D pri...
Mould for the creation of tissue engineered skeletal muscle in 50uL construct volumes. To be 3D prin...
Mould for the creation of tissue engineered skeletal muscle in 500uL construct volumes. To be 3D pri...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Laser sintering (LS) utilises a laser to sinter powder particles. A volumetric model is sliced and p...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Complex three dimensional parts can be manufactured directly from CAD data using rapid prototyping p...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
The transition from 2D to 3D engineered tissue cultures is changing the way biologists can perform i...
Complex three dimensional parts can be manufactured directly from CAD data using rapid prototyping ...
This project is designed to investigate the possibility of using a combination of methods to fabrica...
published_or_final_versionabstractMechanical EngineeringDoctoralDoctor of Philosoph