Functional connectomics spanning multiple areas of mouse visual cortex
Princeton University · Baylor College of Medicine · +14 more institutions
Abstract
Abstract Understanding the brain requires understanding neurons’ functional responses to the circuit architecture shaping them. Here we introduce the MICrONS functional connectomics dataset with dense calcium imaging of around 75,000 neurons in primary visual cortex (VISp) and higher visual areas (VISrl, VISal and VISlm) in an awake mouse that is viewing natural and synthetic stimuli. These data are co-registered with an electron microscopy reconstruction containing more than 200,000 cells and 0.5 billion synapses. Proofreading of a subset of neurons yielded reconstructions that include complete dendritic trees as well the local and inter-areal axonal projections that map up to thousands of cell-to-cell…
Citation impact
- FWCI
- 159.24
- Percentile
- 100%
- References
- 110
Authors
96Topics & keywords
- Connectomics
- Neuroscience
- Visual cortex
- Calcium imaging
- Computer science
- Connectome
- Cell type
- Visual space