Here we present a novel microrheometer able to provide reliable measurements of extremely low volume fluids. We demonstrate the transition from Newtonian to non-Newtonian behavior in a DNA hydrogel whose structure is strongly temperature dependent
Direct measurement techniques are employed to quantify the kinematics of DNA flows in micro-contract...
Altres ajuts: Generalitat de Catalunya: 2018/DI-068, 2018/DI-064The motivation for this study was to...
In the present work, an integrated optofluidic chip for fluid viscosity measurements in the range fr...
The viscosity of gel-forming fluids is notoriously complex and its study can benefit from new model ...
We present systematic characterisation by means of dynamic light scattering and particle tracking te...
Linear Theological behavior and Microrheology measurements of sodium salt calf-thymus DNA aqueous so...
Microfluidics has been the focal point of research communities in recent years. Microfluidics was su...
Conventional bulk rheology presents a well-established technique for the mechanical characterisation...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
We present a study of front microrheology through the development of a microfluidic device and metho...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
We present a straightforward method for measuring the relative viscosity of fluids via a simple grap...
A microrheology technique was developed to measure the viscoelastic properties of solutions of submi...
Fully integrated lab-on-a-chip systems for applications such as DNA sequencing and pathogen detectio...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in micro-contract...
Altres ajuts: Generalitat de Catalunya: 2018/DI-068, 2018/DI-064The motivation for this study was to...
In the present work, an integrated optofluidic chip for fluid viscosity measurements in the range fr...
The viscosity of gel-forming fluids is notoriously complex and its study can benefit from new model ...
We present systematic characterisation by means of dynamic light scattering and particle tracking te...
Linear Theological behavior and Microrheology measurements of sodium salt calf-thymus DNA aqueous so...
Microfluidics has been the focal point of research communities in recent years. Microfluidics was su...
Conventional bulk rheology presents a well-established technique for the mechanical characterisation...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
We present a study of front microrheology through the development of a microfluidic device and metho...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
We present a straightforward method for measuring the relative viscosity of fluids via a simple grap...
A microrheology technique was developed to measure the viscoelastic properties of solutions of submi...
Fully integrated lab-on-a-chip systems for applications such as DNA sequencing and pathogen detectio...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in micro-contract...
Altres ajuts: Generalitat de Catalunya: 2018/DI-068, 2018/DI-064The motivation for this study was to...
In the present work, an integrated optofluidic chip for fluid viscosity measurements in the range fr...