Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and therapeutic applications. By shrinking down conventional laboratory processes and replicating their functions on-chip, the size, cost, required time, and amount of reagent and sample needed can be drastically reduced. However, because these devices operate at length scales orders of magnitude smaller than conventional fluid processes different physical phenomena become dominant, meaning new forces and techniques must be developed to perform them. Acoustic forces have the potential to be useful at small length scales, though, their use has for the most part been limited by the relatively small force magnitudes and low frequencies at which they have...
Critical to the development of lab-on-a-chip (LOC) devices is the ability to accurately manipulate m...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Microfluidics, the study of fluid flow at the sub-millimetre scale, is an enabling technology that o...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
Surface acoustic wave (SAW) devices have emerged over the last two decades as a very promising platf...
Surface acoustic wave (SAW) devices have emerged over the last two decades as a very promising platf...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
A challenging topic of the lab-on-a-chip research is to implement sorting mechanisms on low cost dis...
Fluid manipulation at the microscale presents significant challenges to the design of portable chip ...
Critical to the development of lab-on-a-chip (LOC) devices is the ability to accurately manipulate m...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Microfluidics, the study of fluid flow at the sub-millimetre scale, is an enabling technology that o...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
Surface acoustic wave (SAW) devices have emerged over the last two decades as a very promising platf...
Surface acoustic wave (SAW) devices have emerged over the last two decades as a very promising platf...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
A challenging topic of the lab-on-a-chip research is to implement sorting mechanisms on low cost dis...
Fluid manipulation at the microscale presents significant challenges to the design of portable chip ...
Critical to the development of lab-on-a-chip (LOC) devices is the ability to accurately manipulate m...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...