International audienceMeasuring variations of intracellular free calcium concentration through the changes in fluorescence of a calcium-sensitive dye is a ubiquitous technique in neuroscience. Despite its popularity, confidence intervals (CIs) on the estimated parameters of calcium dynamics models are seldom given. To address this issue, we have developed a two-stage model for ratiometric measurements obtained with a charge-coupled device (CCD) camera. Its first element embeds a parametric calcium dynamics model into a fluorescence intensity model and its second element probabilistically describes the fluorescence measurements by a CCD camera. Using Monte Carlo simulations, we first show that the classical ratiometric transformation gives r...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...
AbstractAs recent advances in calcium sensing technologies facilitate simultaneously imaging action ...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...
International audienceMeasuring variations of intracellular free calcium concentration through the c...
The ratiometric fluorescent calcium indicator Fura-2 plays a fundamental role in the investigation o...
AbstractCalcium-sensitive dual excitation dyes, such as fura-2, are now widely used to measure the f...
Viability of cells is strongly related to their Ca2+ homeostasis. Ca2+ signal fluctuations can be on...
<p>(A) Calcium fluorescence signal (dots) together with the least-squares fit of the calcium excitat...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
Ca2+ ions are vital for several functions in the human body such as muscle contraction, neuronal com...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
Intracellular calcium signals are studied by laser-scanning confocal fluorescence microscopy. The re...
<div><p>Intracellular calcium signals are studied by laser-scanning confocal fluorescence microscopy...
This introduction describes a single-compartment model of calcium dynamics that has been applied to ...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...
AbstractAs recent advances in calcium sensing technologies facilitate simultaneously imaging action ...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...
International audienceMeasuring variations of intracellular free calcium concentration through the c...
The ratiometric fluorescent calcium indicator Fura-2 plays a fundamental role in the investigation o...
AbstractCalcium-sensitive dual excitation dyes, such as fura-2, are now widely used to measure the f...
Viability of cells is strongly related to their Ca2+ homeostasis. Ca2+ signal fluctuations can be on...
<p>(A) Calcium fluorescence signal (dots) together with the least-squares fit of the calcium excitat...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
Ca2+ ions are vital for several functions in the human body such as muscle contraction, neuronal com...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
Intracellular calcium signals are studied by laser-scanning confocal fluorescence microscopy. The re...
<div><p>Intracellular calcium signals are studied by laser-scanning confocal fluorescence microscopy...
This introduction describes a single-compartment model of calcium dynamics that has been applied to ...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...
AbstractAs recent advances in calcium sensing technologies facilitate simultaneously imaging action ...
We extend the sensitivity of quantitative concentration imaging to an approximately 1000-fold range ...