| Literature DB >> 29799773 |
Douglas A Ruff1, Amy M Ni1, Marlene R Cohen1.
Abstract
Understanding how cognitive processes affect the responses of sensory neurons may clarify the relationship between neuronal population activity and behavior. However, tools for analyzing neuronal activity have not kept up with technological advances in recording from large neuronal populations. Here, we describe prevalent hypotheses of how cognitive processes affect sensory neurons, driven largely by a model based on the activity of single neurons or pools of neurons as the units of computation. We then use simple simulations to expand this model to a new conceptual framework that focuses on subspaces of population activity as the relevant units of computation, uses comparisons between brain areas or to behavior to guide analyses of these subspaces, and suggests that population activity is optimized to decode the large variety of stimuli and tasks that animals encounter in natural behavior. This framework provides new ways of understanding the ever-growing quantity of recorded population activity data.Entities:
Keywords: attention; cognition; information coding; noise correlations; spike count correlations; visual cortex
Mesh:
Year: 2018 PMID: 29799773 PMCID: PMC6571103 DOI: 10.1146/annurev-neuro-080317-061936
Source DB: PubMed Journal: Annu Rev Neurosci ISSN: 0147-006X Impact factor: 12.449