In this paper we study the dynamics of single cells encapsulated in water-in-oil emulsions in a microchannel. The flow field of a microfluidic channel is coupled to the internal flow field of a droplet through viscous traction at the interface, resulting in a rotational flow field inside the droplet. An encapsulated single cell being subjected to this flow field responds by undergoing multiple orbits, spins, and deformations that depend on its physical properties. Monitoring the cell dynamics, using a high-speed camera, can lead to the development of new label-free methods for the detection of rare cells, based on their biomechanical properties. A sheath flow microchannel was proposed to strengthen the rotational flow field inside droplets ...
This paper describes a microfluidic quenched flow platform for the investigation of ligand-mediated ...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Droplet based microfluidic system offers unique advantages compared to traditional microfluidic tech...
Droplet Microfluidics can be utilized to control the production of single droplets and double emulsi...
Microfluidics is the science of processing microliters or less of fluid at a time in a channel with ...
The main goal of this work is to numerically investigate the behavior of a cell flowing in a microf...
In this thesis we conduct an investigation into the transient deformation of a droplet flowing throu...
In the present paper, we report a novel centrifugal microfluidic platform for emulsification and sep...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Recent activity in the reconstitution of the spindle apparatus led to the development of microfluidi...
© Controlled Release Society 2017. Micro and nanotechnology can potentially revolutionize drug deliv...
Encapsulating molecules into red blood cells (RBCs) is a challenging topic for drug delivery in clin...
The motion of red blood cells (RBCs) in microcirculation plays an important role in blood flow resis...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
This paper describes a microfluidic quenched flow platform for the investigation of ligand-mediated ...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Droplet based microfluidic system offers unique advantages compared to traditional microfluidic tech...
Droplet Microfluidics can be utilized to control the production of single droplets and double emulsi...
Microfluidics is the science of processing microliters or less of fluid at a time in a channel with ...
The main goal of this work is to numerically investigate the behavior of a cell flowing in a microf...
In this thesis we conduct an investigation into the transient deformation of a droplet flowing throu...
In the present paper, we report a novel centrifugal microfluidic platform for emulsification and sep...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Recent activity in the reconstitution of the spindle apparatus led to the development of microfluidi...
© Controlled Release Society 2017. Micro and nanotechnology can potentially revolutionize drug deliv...
Encapsulating molecules into red blood cells (RBCs) is a challenging topic for drug delivery in clin...
The motion of red blood cells (RBCs) in microcirculation plays an important role in blood flow resis...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
This paper describes a microfluidic quenched flow platform for the investigation of ligand-mediated ...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Droplet based microfluidic system offers unique advantages compared to traditional microfluidic tech...