We present a technique to measure the viscosity of microscopic volumes of liquid using rotating optical tweezers. The technique can be used when only microlitre (or less) sample volumes are available, for example biological or medical samples, or to make local measurements in complicated micro-structures such as cells. The rotation of the optical tweezers is achieved using the polarisation of the trapping light to rotate a trapped birefringent spherical crystal, called vaterite. Transfer of angular momentum from a circularly polarised beam to the particle causes the rotation. The transmitted light can then be analysed to determine the applied torque to the particle and its rotation rate. The applied torque is determined from the change in t...
We describe a simple microrheology method to measure the viscosity coefficients of lyotropic liquid ...
Optically trapped particles can be used as probes to study the mechanical properties of substances o...
We present a straightforward method for measuring the relative viscosity of fluids via a simple grap...
We demonstrate an optical system that can apply and accurately measure the torque exerted by the tra...
Important aspects in the field of microrheology are the studies of the viscosity of fluids within st...
Microrheology is the study of fluid flows and material deformations on a microscopic scale. The study ...
We present a controlled stress microviscometer with applications to complex fluids. It generates and...
We demonstrate an optical system that can apply and accurately measure the torque exerted by the tra...
Microrheology, the study of the behavior of fluids on the microscopic scale, has been and continues ...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
We investigate the dynamics of microscopic flow vortices. We create flow vortices by rotation of bir...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
In recent years there has been an explosive development of interest in the measurement of forces at ...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
We describe a simple microrheology method to measure the viscosity coefficients of lyotropic liquid ...
Optically trapped particles can be used as probes to study the mechanical properties of substances o...
We present a straightforward method for measuring the relative viscosity of fluids via a simple grap...
We demonstrate an optical system that can apply and accurately measure the torque exerted by the tra...
Important aspects in the field of microrheology are the studies of the viscosity of fluids within st...
Microrheology is the study of fluid flows and material deformations on a microscopic scale. The study ...
We present a controlled stress microviscometer with applications to complex fluids. It generates and...
We demonstrate an optical system that can apply and accurately measure the torque exerted by the tra...
Microrheology, the study of the behavior of fluids on the microscopic scale, has been and continues ...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
We investigate the dynamics of microscopic flow vortices. We create flow vortices by rotation of bir...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
In recent years there has been an explosive development of interest in the measurement of forces at ...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
We describe a simple microrheology method to measure the viscosity coefficients of lyotropic liquid ...
Optically trapped particles can be used as probes to study the mechanical properties of substances o...
We present a straightforward method for measuring the relative viscosity of fluids via a simple grap...