Significance: Light-field microscopy (LFM) enables fast, light-efficient, volumetric imaging of neuronal activity with calcium indicators. Calcium transients differ in temporal signal-to-noise ratio (tSNR) and spatial confinement when extracted from volumes reconstructed by different algorithms. Aim: We evaluated the capabilities and limitations of two light-field reconstruction algorithms for calcium fluorescence imaging. Approach: We acquired light-field image series from neurons either bulk-labeled or filled intracellularly with the red-emitting calcium dye CaSiR-1 in acute mouse brain slices. We compared the tSNR and spatial onfinement of calcium signals extracted from volumes reconstructed with synthetic refocusing and Richardson-Lucy ...
In vitro systems mimicking brain regions, brain organoids, are revolutionizing the neuroscience fiel...
Genetically encoded calcium indicators for visualizing dynamic cellular activity have greatly expand...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Imaging intracellular calcium concentration via reporters that change their fluorescence properties ...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Fast volumetric microscopy is required to monitor large-scale neural ensembles with high spatio-temp...
Two-photon calcium imaging of neuronal populations enables optical recording of spiking activity in ...
International audienceImaging intracellular calcium concentration via reporters that change their fl...
High-speed, large-scale three-dimensional (3D) imaging of neuronal activity poses a major challenge ...
© 2015 Society of Photo-Optical Instrumentation Engineers (SPIE). Reconstructing a three-dimens...
Functional imaging of the mouse brain in its extreme complexity involves substantial trade-offs. An...
Methods for one-photon fluorescent imaging of calcium dynamics can capture the activity of hundreds ...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
We present a modular approach for analyzing calcium imaging recordings of large neuronal ensembles. ...
Recent technological advances in light-sheet microscopy make it possible to perform whole-brain func...
In vitro systems mimicking brain regions, brain organoids, are revolutionizing the neuroscience fiel...
Genetically encoded calcium indicators for visualizing dynamic cellular activity have greatly expand...
One main limitation of established neuroimaging methods is the inability to directly visualize large...
Imaging intracellular calcium concentration via reporters that change their fluorescence properties ...
Real-time visualization of large-scale neural dynamics in whole mammalian brains is hindered with ex...
Fast volumetric microscopy is required to monitor large-scale neural ensembles with high spatio-temp...
Two-photon calcium imaging of neuronal populations enables optical recording of spiking activity in ...
International audienceImaging intracellular calcium concentration via reporters that change their fl...
High-speed, large-scale three-dimensional (3D) imaging of neuronal activity poses a major challenge ...
© 2015 Society of Photo-Optical Instrumentation Engineers (SPIE). Reconstructing a three-dimens...
Functional imaging of the mouse brain in its extreme complexity involves substantial trade-offs. An...
Methods for one-photon fluorescent imaging of calcium dynamics can capture the activity of hundreds ...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
We present a modular approach for analyzing calcium imaging recordings of large neuronal ensembles. ...
Recent technological advances in light-sheet microscopy make it possible to perform whole-brain func...
In vitro systems mimicking brain regions, brain organoids, are revolutionizing the neuroscience fiel...
Genetically encoded calcium indicators for visualizing dynamic cellular activity have greatly expand...
One main limitation of established neuroimaging methods is the inability to directly visualize large...