In the present study, a design of the suspended polymeric microfluidic platform is introduced that is fabricated with three polymeric layers. Changing the microchannel plane to be perpendicular to microcantilever plane, drastically decreases moment of inertia in that direction. In addition, the platform is made of polymer (around five orders of magnitude less compared to silicon). It causes significant increase in the sensitivity of the cantilever deflection. Next, although the dimensions of this platform are constant, by misaligning the embedded microchannels laterally in the suspended microfluidic platform, the sensitivity can be highly increased. The investigation is studied on four fluids including water, seawater, milk, and blood for f...
This thesis describes an approach that is particularly useful for prototyping new devices and system...
The behaviour of blood flow in relation to microchannel surface roughness has been investigated. Spe...
Fluid-structure interactions (FSI) are used in a variety of sensors based on micro- and nanotechnolo...
In the present study, a design of the suspended polymeric microfluidic platform is introduced that i...
Measuring of fluid properties such as dynamic viscosity and density has tremendous potential for var...
This paper presents a systematic analysis of the sensitivity of design parameters of a microchannel ...
Over decades, decentralized diagnostics continues to move towards rapid and cost-effective testing a...
Blood is a complex suspension that demonstrates non-Newtonian rheological characteristics. The study...
Through developments in fabrication technologies in recent years, it is now possible to build and ch...
Fabrication of microfluidic devices for use in biomedical research using three-dimensional (3D) prin...
The main objective of this thesis is to characterize and investigate single-phase liquid flow in mic...
Through developments in 3D fabrication technologies in recent years, we can now build and characteri...
The objectives of the proposed research project are: To develop new pumping devices for chemical and...
This paper reports on the first demonstration of polymeric microfluidic cantilever sensors. Microcan...
Microfluidics refers to devices and methods for controlling and manipulating fluid flows at length s...
This thesis describes an approach that is particularly useful for prototyping new devices and system...
The behaviour of blood flow in relation to microchannel surface roughness has been investigated. Spe...
Fluid-structure interactions (FSI) are used in a variety of sensors based on micro- and nanotechnolo...
In the present study, a design of the suspended polymeric microfluidic platform is introduced that i...
Measuring of fluid properties such as dynamic viscosity and density has tremendous potential for var...
This paper presents a systematic analysis of the sensitivity of design parameters of a microchannel ...
Over decades, decentralized diagnostics continues to move towards rapid and cost-effective testing a...
Blood is a complex suspension that demonstrates non-Newtonian rheological characteristics. The study...
Through developments in fabrication technologies in recent years, it is now possible to build and ch...
Fabrication of microfluidic devices for use in biomedical research using three-dimensional (3D) prin...
The main objective of this thesis is to characterize and investigate single-phase liquid flow in mic...
Through developments in 3D fabrication technologies in recent years, we can now build and characteri...
The objectives of the proposed research project are: To develop new pumping devices for chemical and...
This paper reports on the first demonstration of polymeric microfluidic cantilever sensors. Microcan...
Microfluidics refers to devices and methods for controlling and manipulating fluid flows at length s...
This thesis describes an approach that is particularly useful for prototyping new devices and system...
The behaviour of blood flow in relation to microchannel surface roughness has been investigated. Spe...
Fluid-structure interactions (FSI) are used in a variety of sensors based on micro- and nanotechnolo...