Through developments in 3D fabrication technologies in recent years, it is now possible to build and characterize much more sophisticated 3D platforms than was formerly the case. Regions of differing polarity, binding behaviour, flexibility/rigidity, can be incorporated into these fluidic systems. Furthermore, materials that can switch these characteristics can be incorporated, enabling the creation of microfluidic building blocks that exhibit switchable characteristics such as programmed microvehicle movement (chemotaxis), switchable binding and release, switchable soft polymer actuation (e.g. valving), and selective uptake and release of molecular targets. These building blocks can be in turn integrated into microfluidic systems with ...
Microfluidic devices have not yet evolved into commercial off-the-shelf products. Although highly in...
Autonomous chemical sensing platforms capable of operating independently for long periods of time (m...
Since the initial breakthroughs in the 1960’s and 70’s that led to the development of the glucose bi...
Through developments in 3D fabrication technologies in recent years, we can now build and characteri...
Through developments in 3D fabrication technologies in recent years, it is now possible to build and...
Through developments in fabrication technologies in recent years, it is now possible to build and ch...
Our capacity to create and characterise structures with 3D spatial control ranging from molecular sc...
It is over 40 years since the first papers proposing the concept of the artificial pancreas, by comb...
Imagine a world in which issues related to long-term (months to years) reliability of chem/bio-sensi...
Our capacity to create and characterise structures with 3D spatial control ranging from molecular sc...
Breakthroughs in fundamental research now allow unprecedented control of materials at the molecular ...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Microfluidic devices have not yet evolved into commercial off-the-shelf products. Although highly in...
Autonomous chemical sensing platforms capable of operating independently for long periods of time (m...
Since the initial breakthroughs in the 1960’s and 70’s that led to the development of the glucose bi...
Through developments in 3D fabrication technologies in recent years, we can now build and characteri...
Through developments in 3D fabrication technologies in recent years, it is now possible to build and...
Through developments in fabrication technologies in recent years, it is now possible to build and ch...
Our capacity to create and characterise structures with 3D spatial control ranging from molecular sc...
It is over 40 years since the first papers proposing the concept of the artificial pancreas, by comb...
Imagine a world in which issues related to long-term (months to years) reliability of chem/bio-sensi...
Our capacity to create and characterise structures with 3D spatial control ranging from molecular sc...
Breakthroughs in fundamental research now allow unprecedented control of materials at the molecular ...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Microfluidic devices have not yet evolved into commercial off-the-shelf products. Although highly in...
Autonomous chemical sensing platforms capable of operating independently for long periods of time (m...
Since the initial breakthroughs in the 1960’s and 70’s that led to the development of the glucose bi...