Spontaneous and sensory-evoked activity propagates across varying spatial scales in the mammalian cortex, but technical challenges have limited conceptual links between the function of local neuronal circuits and brain-wide network dynamics. We present a method for simultaneous cellular-resolution two-photon calcium imaging of a local microcircuit and mesoscopic widefield calcium imaging of the entire cortical mantle in awake mice. Our multi-scale approach involves a microscope with an orthogonal axis design where the mesoscopic objective is oriented above the brain and the two-photon objective is oriented horizontally, with imaging performed through a microprism. We also introduce a viral transduction method for robust and widespread gene ...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
Two-photon scanning microscopy has advanced our understanding of neural signaling in non-mammalian s...
In vivo two-photon calcium imaging would benefit from the use of multiple excitation beams to increa...
Spontaneous and sensory-evoked activity propagates across varying spatial scales in the mammalian co...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
In vivo 2-photon calcium imaging would benefit from the use of multiple excitation beams to increase...
To capture the emergent properties of neural circuits, high-speed volumetric imaging of neural activ...
Two-photon excitation fluorescence microscopy is widely used to study the activity of neuronal circu...
Recording the activity of large populations of neurons is an important step toward understanding the...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
Two-photon scanning microscopy has advanced our understanding of neural signaling in non-mammalian s...
In vivo two-photon calcium imaging would benefit from the use of multiple excitation beams to increa...
Spontaneous and sensory-evoked activity propagates across varying spatial scales in the mammalian co...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Two-photon calcium imaging provides an optical readout of neuronal activity in populations of neuron...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
In vivo 2-photon calcium imaging would benefit from the use of multiple excitation beams to increase...
To capture the emergent properties of neural circuits, high-speed volumetric imaging of neural activ...
Two-photon excitation fluorescence microscopy is widely used to study the activity of neuronal circu...
Recording the activity of large populations of neurons is an important step toward understanding the...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
Two-photon scanning microscopy has advanced our understanding of neural signaling in non-mammalian s...
In vivo two-photon calcium imaging would benefit from the use of multiple excitation beams to increa...