Existing approaches to red blood cell (RBC) experiments on the single-cell level usually rely on chemical or physical manipulations that often cause difficulties with preserving the RBC's integrity in a controlled microenvironment. Here, we introduce a straightforward, self-filling microfluidic device that autonomously separates and isolates single RBCs directly from unprocessed human blood samples and confines them in diffusion-controlled microchambers by solely exploiting their unique intrinsic properties. We were able to study the photo-induced oxygenation cycle of single functional RBCs by Raman microscopy without the limitations typically observed in optical tweezers based methods. Using bright-field microscopy, our noninvasive approac...
Techniques, such as micropipette aspiration and optical tweezers, are widely used to measure cell me...
Just as blood diagnostic tests are ubiquitous in the clinic, blood component transfusions are among ...
International audienceThanks to their membrane elasticity and fluidity, red blood cells (RBCs) are c...
Existing approaches to red blood cell (RBC) experiments on the single-cell level usually rely on che...
Even the most basic and seemingly simple living biological systems exist far from thermodynamic equi...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
Màster Oficial en Física Avançada, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
The average environmental response of red blood cells (RBCs) is routinely measured in ensemble studi...
Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certai...
The utilizations of microfluidic chips for single RBC (red blood cell) studies have attracted great ...
International audienceIn this paper we present a microfluidic architecture dedicated to the study of...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Several experimental techniques were performed in the past years using in vitro environments, in an ...
Hemorheological alterations in the majority of metabolic diseases are always connected with blood rh...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
Techniques, such as micropipette aspiration and optical tweezers, are widely used to measure cell me...
Just as blood diagnostic tests are ubiquitous in the clinic, blood component transfusions are among ...
International audienceThanks to their membrane elasticity and fluidity, red blood cells (RBCs) are c...
Existing approaches to red blood cell (RBC) experiments on the single-cell level usually rely on che...
Even the most basic and seemingly simple living biological systems exist far from thermodynamic equi...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
Màster Oficial en Física Avançada, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
The average environmental response of red blood cells (RBCs) is routinely measured in ensemble studi...
Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certai...
The utilizations of microfluidic chips for single RBC (red blood cell) studies have attracted great ...
International audienceIn this paper we present a microfluidic architecture dedicated to the study of...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Several experimental techniques were performed in the past years using in vitro environments, in an ...
Hemorheological alterations in the majority of metabolic diseases are always connected with blood rh...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
Techniques, such as micropipette aspiration and optical tweezers, are widely used to measure cell me...
Just as blood diagnostic tests are ubiquitous in the clinic, blood component transfusions are among ...
International audienceThanks to their membrane elasticity and fluidity, red blood cells (RBCs) are c...