We design, fabricate and experimentally demonstrate a novel generic method to detect flow rates and precise changes of flow velocity in microfluidic devices. Using our method we can measure flow rates of ~2 mm/s with a resolution of 0.08 mm/s. The operation principle is based on the Doppler shifting of light diffracted from a self-generated periodic array of bubbles within the channel and using self-heterodyne detection to analyze the diffracted light. As such, the device is appealing for variety of “lab on chip” bio-applications where a simple and accurate speed measurement is needed, e.g., for flow-cytometry and cell sorting
Nanofluidics finds its root in the study of fluids and flows at the nanoscale. Flow rate is a quanti...
We report results obtained with a wide-field laser Doppler detection scheme used to perform laser Do...
To measure blood flow rate in ex-vivo circulation, we propose an optical Doppler flowmeter based on ...
A way to measure flow rate inside a microchannel using a contactless optical technique is reported. ...
Microfluidic device with integrated flow rate sensor is demonstrated. Two glass capillaries and a sh...
A system using low-cost and off-the-shelf electronic components for measuring very low flow rates of...
We realized a structure that is able to generate vortices inside a microfluidic channel. The structu...
A microfluidic sensor for detection of cells flowing in a microchannel is presented. The sensor cons...
This thesis describes a method for measuring the flow velocity dynamics of microcirculatory blood us...
AbstractA microfluidic sensor for detection of cells flowing in a microchannel is presented. The sen...
A microfluidic sensor for detection of cells flowing in a microchannel is presented. The sensor cons...
This paper presents micromachined thermal sensors for measuring liquid flow rates in the nanoliter-p...
We propose a new confocal device for flow profiling in microcapillaries. A viewfinder system is deve...
We have developed a novel, non-intrusive fluid velocity measurement method based on photobleaching o...
Numerous studies on microfluidics diagnostic devices have been published in the last decade. Althoug...
Nanofluidics finds its root in the study of fluids and flows at the nanoscale. Flow rate is a quanti...
We report results obtained with a wide-field laser Doppler detection scheme used to perform laser Do...
To measure blood flow rate in ex-vivo circulation, we propose an optical Doppler flowmeter based on ...
A way to measure flow rate inside a microchannel using a contactless optical technique is reported. ...
Microfluidic device with integrated flow rate sensor is demonstrated. Two glass capillaries and a sh...
A system using low-cost and off-the-shelf electronic components for measuring very low flow rates of...
We realized a structure that is able to generate vortices inside a microfluidic channel. The structu...
A microfluidic sensor for detection of cells flowing in a microchannel is presented. The sensor cons...
This thesis describes a method for measuring the flow velocity dynamics of microcirculatory blood us...
AbstractA microfluidic sensor for detection of cells flowing in a microchannel is presented. The sen...
A microfluidic sensor for detection of cells flowing in a microchannel is presented. The sensor cons...
This paper presents micromachined thermal sensors for measuring liquid flow rates in the nanoliter-p...
We propose a new confocal device for flow profiling in microcapillaries. A viewfinder system is deve...
We have developed a novel, non-intrusive fluid velocity measurement method based on photobleaching o...
Numerous studies on microfluidics diagnostic devices have been published in the last decade. Althoug...
Nanofluidics finds its root in the study of fluids and flows at the nanoscale. Flow rate is a quanti...
We report results obtained with a wide-field laser Doppler detection scheme used to perform laser Do...
To measure blood flow rate in ex-vivo circulation, we propose an optical Doppler flowmeter based on ...