Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging of cellular activity in living animals. However, they have still not reached their full potential for in vivo imaging of neuronal activity due to limitations in expression levels, dynamic range, and sensitivity for reporting action potentials. Here, we report that viral expression of the ratiometric Ca(2+) sensor yellow cameleon 3.60 (YC3.60) in pyramidal neurons of mouse barrel cortex enables in vivo measurement of neuronal activity with high dynamic range and sensitivity across multiple spatial scales. By combining juxtacellular recordings and two-photon imaging in vitro and in vivo, we demonstrate that YC3.60 can resolve single action poten...
Neurons in the nervous system can change their functional properties over time. At present, there ar...
The brain's astounding achievements regarding movement control and sensory processing are based on c...
Neurons in the nervous system can change their functional properties over time. At present, there ar...
Fluorescent calcium (Ca2+) indicator proteins (FCIPs) are promising tools for functional imaging of ...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
The brain's astounding achievements regarding movement control and sensory processing are based on c...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Measurement of population activity with single-neuron resolution is pivotal for understanding how in...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Two-photon calcium imaging of neuronal populations enables optical recording of spiking activity in ...
Neurons in the nervous system can change their functional properties over time. At present, there ar...
The brain's astounding achievements regarding movement control and sensory processing are based on c...
Neurons in the nervous system can change their functional properties over time. At present, there ar...
Fluorescent calcium (Ca2+) indicator proteins (FCIPs) are promising tools for functional imaging of ...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Fluorescent calcium (Ca(2+)) indicator proteins (FCIPs) are promising tools for functional imaging o...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
The brain's astounding achievements regarding movement control and sensory processing are based on c...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Measurement of population activity with single-neuron resolution is pivotal for understanding how in...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Neuronal population activity in the hippocampal CA3 subfield is implicated in cognitive brain functi...
Two-photon calcium imaging of neuronal populations enables optical recording of spiking activity in ...
Neurons in the nervous system can change their functional properties over time. At present, there ar...
The brain's astounding achievements regarding movement control and sensory processing are based on c...
Neurons in the nervous system can change their functional properties over time. At present, there ar...