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Function and therapeutic value of astrocytes in neurological diseases |  Nature Reviews Drug Discovery
Function and therapeutic value of astrocytes in neurological diseases | Nature Reviews Drug Discovery

Scaling up to meet new challenges of brain and behaviour through deep brain  electrophysiology in freely moving sheep | bioRxiv
Scaling up to meet new challenges of brain and behaviour through deep brain electrophysiology in freely moving sheep | bioRxiv

Gradinaru Lab Publications
Gradinaru Lab Publications

Next-generation interfaces for studying neural function | Nature  Biotechnology
Next-generation interfaces for studying neural function | Nature Biotechnology

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience

Advanced imaging and labelling methods to decipher brain cell organization  and function | Nature Reviews Neuroscience
Advanced imaging and labelling methods to decipher brain cell organization and function | Nature Reviews Neuroscience

Publications | Cumming School of Medicine | University of Calgary
Publications | Cumming School of Medicine | University of Calgary

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience

An amygdala-to-hypothalamus circuit for social reward | Nature Neuroscience
An amygdala-to-hypothalamus circuit for social reward | Nature Neuroscience

Scaling up to meet new challenges of brain and behaviour through deep brain  electrophysiology in freely moving sheep | bioRxiv
Scaling up to meet new challenges of brain and behaviour through deep brain electrophysiology in freely moving sheep | bioRxiv

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience

Engineered AAVs for efficient noninvasive gene delivery to the central and  peripheral nervous systems | Nature Neuroscience
Engineered AAVs for efficient noninvasive gene delivery to the central and peripheral nervous systems | Nature Neuroscience

Synergy from Silence in a Combinatorial Neural Code | Journal of  Neuroscience
Synergy from Silence in a Combinatorial Neural Code | Journal of Neuroscience

Intersectional monosynaptic tracing for dissecting subtype-specific  organization of GABAergic interneuron inputs | Nature Neuroscience
Intersectional monosynaptic tracing for dissecting subtype-specific organization of GABAergic interneuron inputs | Nature Neuroscience

Two opposing hippocampus to prefrontal cortex pathways for the control of  approach and avoidance behaviour | Nature Communications
Two opposing hippocampus to prefrontal cortex pathways for the control of approach and avoidance behaviour | Nature Communications

Publications – Gradinaru Lab
Publications – Gradinaru Lab

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience

Neural mechanisms underlying the hierarchical construction of perceived  aesthetic value | Nature Communications
Neural mechanisms underlying the hierarchical construction of perceived aesthetic value | Nature Communications

Scaling up to meet new challenges of brain and behaviour through deep brain  electrophysiology in freely moving sheep | bioRxiv
Scaling up to meet new challenges of brain and behaviour through deep brain electrophysiology in freely moving sheep | bioRxiv

Imaging neural activity in the ventral nerve cord of behaving adult  Drosophila | Nature Communications
Imaging neural activity in the ventral nerve cord of behaving adult Drosophila | Nature Communications

Brain experiments imply adaptation mechanisms which outperform common AI  learning algorithms | Scientific Reports
Brain experiments imply adaptation mechanisms which outperform common AI learning algorithms | Scientific Reports

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience

Neuronal stability in medial frontal cortex sets individual variability in  decision-making | Nature Neuroscience
Neuronal stability in medial frontal cortex sets individual variability in decision-making | Nature Neuroscience