This communication first demonstrates bio-compatibility of a recently developed opto-electrokinetic manipulation technique, using microorganisms. Aggregation, patterning, translation, trapping and size-based separation of microorganisms performed with the technique firmly establishes its usefulness for development of a high-performance on-chip bioassay system
The field of lab-on-a-chip offers exciting new capabilities for chemical and biological assays, incl...
The micro total analysis system (μTAS) has seen great interest and advances since its definition ove...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Microfluidics and lab-on-a-chip technology offers unique advantages for the next generation devices ...
The introduction of optoelectrokinetics (OEK) into lab-on-a-chip systems has facilitated a new cutti...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
Noncontact robotic particle grippers with trapping, manipulation, and release functions are highly d...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
Manipulation devices based on magnetic forces, acoustic waves, hydrodynamic flows, light waves, or e...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
Bioprocessors for concentrating bioparticles, such as cells and molecules, are commonly needed in bi...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
The field of lab-on-a-chip offers exciting new capabilities for chemical and biological assays, incl...
The micro total analysis system (μTAS) has seen great interest and advances since its definition ove...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Microfluidics and lab-on-a-chip technology offers unique advantages for the next generation devices ...
The introduction of optoelectrokinetics (OEK) into lab-on-a-chip systems has facilitated a new cutti...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
Noncontact robotic particle grippers with trapping, manipulation, and release functions are highly d...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
Manipulation devices based on magnetic forces, acoustic waves, hydrodynamic flows, light waves, or e...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
Bioprocessors for concentrating bioparticles, such as cells and molecules, are commonly needed in bi...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
The field of lab-on-a-chip offers exciting new capabilities for chemical and biological assays, incl...
The micro total analysis system (μTAS) has seen great interest and advances since its definition ove...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...