The in vitro experimental investigations provide an excellent approach to understand complex blood flow phenomena involved at a microscopic level. This paper emphasizes an emerging experimental technique capable to quantify the flow patterns inside microchannels with high spatial and temporal resolution. This technique, known as confocal micro-PIV, consists of a spinning disk confocal microscope, high speed camera and a diode-pumped solid state (DPSS) laser. Velocity profiles of pure water (PW), physiological saline (PS) and in vitro blood were measured in a 100mm glass square and rectangular polydimethysiloxane (PDMS) microchannel. The good agreement obtained between measured and estimated results suggests that this system is a ver...
Over the years, various experimental methods have been applied in an effort to understand the blood...
The development of optical experimental techniques has contributed to obtain explanations on the w...
The blood flow dynamics in microcirculation depends strongly on the motion, deformation and interact...
This paper examines the ability to measure the velocity of both physiological saline (PS) and in vi...
Over the years, various experimental methods have been applied in an effort to understand the blood ...
The in vitro experimental investigations provide an excellent approach to understand complex blood f...
Progress in microfabricated technologies has attracted the attention of researchers in several areas...
A detailed measurement of the blood flow velocity profile in microchannels in vitro is fundamental t...
A confocal microparticle image velocimetry (micro-PIV) system was used to obtain detailed informatio...
The detail measurements of velocity profiles of blood flow in microchannels are fundamental for a b...
The development of optical experimental techniques has contributed to obtain explanations on the blo...
The development of optical experimental techniques has contributed to obtain explanations on the bl...
Over the years, various experimental methods have been applied in an effort to understand the blood ...
Approximately, the half volume of the blood is composed of red blood cells (RBCs) which is believed...
Blood in large arteries may be treated as a homogenous fluid from a macroscopic prospective. Howeve...
Over the years, various experimental methods have been applied in an effort to understand the blood...
The development of optical experimental techniques has contributed to obtain explanations on the w...
The blood flow dynamics in microcirculation depends strongly on the motion, deformation and interact...
This paper examines the ability to measure the velocity of both physiological saline (PS) and in vi...
Over the years, various experimental methods have been applied in an effort to understand the blood ...
The in vitro experimental investigations provide an excellent approach to understand complex blood f...
Progress in microfabricated technologies has attracted the attention of researchers in several areas...
A detailed measurement of the blood flow velocity profile in microchannels in vitro is fundamental t...
A confocal microparticle image velocimetry (micro-PIV) system was used to obtain detailed informatio...
The detail measurements of velocity profiles of blood flow in microchannels are fundamental for a b...
The development of optical experimental techniques has contributed to obtain explanations on the blo...
The development of optical experimental techniques has contributed to obtain explanations on the bl...
Over the years, various experimental methods have been applied in an effort to understand the blood ...
Approximately, the half volume of the blood is composed of red blood cells (RBCs) which is believed...
Blood in large arteries may be treated as a homogenous fluid from a macroscopic prospective. Howeve...
Over the years, various experimental methods have been applied in an effort to understand the blood...
The development of optical experimental techniques has contributed to obtain explanations on the w...
The blood flow dynamics in microcirculation depends strongly on the motion, deformation and interact...