We report the application of a microfluidic device for semi-contact temperature measurement in picoliter volumes of aqueous media. Our device, a freely positionable multifunctional pipette, operates by a hydrodynamic confinement principle, i.e., by creating a virtual flow cell of micrometer dimensions within a greater aqueous volume. We utilized two fluorescent rhodamines, which exhibit different fluorescent responses with temperature, and made ratiometric intensity measurements. The temperature dependence of the intensity ratio was calibrated and used in a model study of the thermal activation of TRPV1 ion channels expressed in Chinese hamster ovary cells. Our approach represents a practical and robust solution to the specific problem of ...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
Temperature is always fundamental, yet problematic to measure in ultrasmall volumes of fluid. This p...
We report the application of a microfluidic device for semi-contact temperature measurement in picol...
We report the application of a microfluidic device for semi-contact temperature measurement in picol...
The temperature dependent quantum efficiency of fluorescent dyes can be used to measure changes in t...
AbstractPrecise temperature distribution measurements with high spatial resolution are of great impo...
Thermally sensitive fluorescent indicators have been proposed to monitor temperature changes in micr...
Abstract: The feasibility of employing laser-induced fluorescence (LIF) techniques to study thermal ...
The feasibility of implementing a two-color laser-induced fluorescence (LIF) technique to study ther...
This project presents an experimental investigation on the temperature measurement in microfludic s...
Ratiometric laser induced fluorescence (LIF) thermometry is developed as a tool for temperature meas...
Ratiometric laser induced fluorescence (LIF) thermometry is developed as a tool for temperature meas...
We describe a novel microfluorometric technique, based on the temperature-dependent fluorescence emi...
We describe a novel microfluorometric technique, based on the temperature-dependent fluorescence emi...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
Temperature is always fundamental, yet problematic to measure in ultrasmall volumes of fluid. This p...
We report the application of a microfluidic device for semi-contact temperature measurement in picol...
We report the application of a microfluidic device for semi-contact temperature measurement in picol...
The temperature dependent quantum efficiency of fluorescent dyes can be used to measure changes in t...
AbstractPrecise temperature distribution measurements with high spatial resolution are of great impo...
Thermally sensitive fluorescent indicators have been proposed to monitor temperature changes in micr...
Abstract: The feasibility of employing laser-induced fluorescence (LIF) techniques to study thermal ...
The feasibility of implementing a two-color laser-induced fluorescence (LIF) technique to study ther...
This project presents an experimental investigation on the temperature measurement in microfludic s...
Ratiometric laser induced fluorescence (LIF) thermometry is developed as a tool for temperature meas...
Ratiometric laser induced fluorescence (LIF) thermometry is developed as a tool for temperature meas...
We describe a novel microfluorometric technique, based on the temperature-dependent fluorescence emi...
We describe a novel microfluorometric technique, based on the temperature-dependent fluorescence emi...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
A fluorescent micro-optofluidic temperature sensor is developed using a temperature sensitive dye. T...
Temperature is always fundamental, yet problematic to measure in ultrasmall volumes of fluid. This p...