Two-photon calcium imaging enables functional analysis of neuronal circuits by inferring action potential (AP) occurrence ('spike trains') from cellular fluorescence signals. It remains unclear how experimental parameters such as signal-to-noise ratio (SNR) and acquisition rate affect spike inference and whether additional information about network structure can be extracted. Here we present a simulation framework for quantitatively assessing how well spike dynamics and network topology can be inferred from noisy calcium imaging data. For simulated AP-evoked calcium transients in neocortical pyramidal cells, we analyzed the quality of spike inference as a function of SNR and data acquisition rate using a recently introduced peeling ...
BackgroundWith the increasing popularity of calcium imaging in neuroscience research, choosing the r...
Intracellular calcium spiking generates versatile signals that control various key neuronal function...
A systematic assessment of global neural network connectivity through direct electrophysiological as...
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...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
One of the major areas of research in computational neuroscience is focused on inferring the connect...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
A fundamental challenge in calcium imaging has been to infer spike rates of neurons from the measure...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
A fundamental challenge in calcium imaging has been to infer spike rates of neurons from the measure...
Abstract. Two-photon calcium imaging is an emerging experimental technique that enables the study of...
<div><p>A systematic assessment of global neural network connectivity through direct electrophysiolo...
Inference of action potentials ('spikes') from neuronal calcium signals is complicated by the scarci...
A systematic assessment of global neural network connectivity through direct electrophysiological as...
BackgroundWith the increasing popularity of calcium imaging in neuroscience research, choosing the r...
Intracellular calcium spiking generates versatile signals that control various key neuronal function...
A systematic assessment of global neural network connectivity through direct electrophysiological as...
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...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
One of the major areas of research in computational neuroscience is focused on inferring the connect...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
A fundamental challenge in calcium imaging has been to infer spike rates of neurons from the measure...
Calcium imaging has been used as a promising technique to monitor the dynamic activity of neuronal p...
A fundamental challenge in calcium imaging has been to infer spike rates of neurons from the measure...
Abstract. Two-photon calcium imaging is an emerging experimental technique that enables the study of...
<div><p>A systematic assessment of global neural network connectivity through direct electrophysiolo...
Inference of action potentials ('spikes') from neuronal calcium signals is complicated by the scarci...
A systematic assessment of global neural network connectivity through direct electrophysiological as...
BackgroundWith the increasing popularity of calcium imaging in neuroscience research, choosing the r...
Intracellular calcium spiking generates versatile signals that control various key neuronal function...
A systematic assessment of global neural network connectivity through direct electrophysiological as...