In this work the recent significant progress made in the development and application of micronresolution Particle Image Velocimetry (μPIV) have been described. In these last years, the capability of μPIV has been demonstrated by applying this technique to flows in microchannels, micronozzles, BioMEMS, and flow around cells. The development of this specific optical technique for microfluidics has extended typical spatial resolutions of the conventional PIV from order 1-mm to order 1-μm. These advancements have been obtained as a result of novel improvements in instrument hardware and post processing software. In this paper the main hardware characteristics of a μPIV apparatus are discussed and commented. The main differ...
Micro Particle Image Velocimetry (PIV) is a non-intrusive technique widely used nowadays to experime...
High quality PIV experiments in micro-channel flow geometries to get detailed and accurate flow meas...
Micro-particle image velocimetry achieves resolution as small as 1 µm3 by microscopically imaging fl...
In this work the recent significant progress made in the development and application of micronresolu...
Image-based sensor systems are quite popular in micro-scale flow investigations due to their flexibi...
We present an overview of Micro Particle Image Velocimetry (µPIV); an optical, non– intrusive measur...
The micro-Particle Image Velocimetry (micro-PIV) was used to measure flow velocities in micro-channe...
In micro-PIV, reaching the optimum image density has always been difficult due to high displacement ...
The micro-PIV technique represents a development of the general particle image velocimetry technique...
Abstract This paper presents the design and implemen-tation of velocimetry techniques applicable to ...
The biological flow characteristics inside a microchannel were investigated experimentally using a m...
Recently, microscale flows have been receiving large attention in various research areas. However, m...
Recently, quantitative flow visualization has become an important tool to investigate three-dimensio...
This thesis is a compiled collection of works on the development of Particle Image Velocimetry (PIV)...
A novel method is developed to improve the accuracy of micro-resolution particle image velocimetry (...
Micro Particle Image Velocimetry (PIV) is a non-intrusive technique widely used nowadays to experime...
High quality PIV experiments in micro-channel flow geometries to get detailed and accurate flow meas...
Micro-particle image velocimetry achieves resolution as small as 1 µm3 by microscopically imaging fl...
In this work the recent significant progress made in the development and application of micronresolu...
Image-based sensor systems are quite popular in micro-scale flow investigations due to their flexibi...
We present an overview of Micro Particle Image Velocimetry (µPIV); an optical, non– intrusive measur...
The micro-Particle Image Velocimetry (micro-PIV) was used to measure flow velocities in micro-channe...
In micro-PIV, reaching the optimum image density has always been difficult due to high displacement ...
The micro-PIV technique represents a development of the general particle image velocimetry technique...
Abstract This paper presents the design and implemen-tation of velocimetry techniques applicable to ...
The biological flow characteristics inside a microchannel were investigated experimentally using a m...
Recently, microscale flows have been receiving large attention in various research areas. However, m...
Recently, quantitative flow visualization has become an important tool to investigate three-dimensio...
This thesis is a compiled collection of works on the development of Particle Image Velocimetry (PIV)...
A novel method is developed to improve the accuracy of micro-resolution particle image velocimetry (...
Micro Particle Image Velocimetry (PIV) is a non-intrusive technique widely used nowadays to experime...
High quality PIV experiments in micro-channel flow geometries to get detailed and accurate flow meas...
Micro-particle image velocimetry achieves resolution as small as 1 µm3 by microscopically imaging fl...