Here, we review the wealth of reagents available to map and manipulate neuronal activity with light.
First-pass extracted concept
functional imaging
Candidate: concept label2 source documents3 linked claims
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Evidence Snippets
Functional imaging demonstrates that DPM activation evokes robust increases in chloride in MB neurons, but is unable to cause detectable increases in calcium or cAMP.
Supporting Sources
Linked Claims
Drosophila is presented as a premier model organism for studying how neural circuit activity patterns coordinate behavior because of its genetic tools and tractable brain complexity.
The review covers reagents for using light to map and manipulate neuronal activity in Drosophila.
Functional imaging showed that DPM activation evokes robust chloride increases in mushroom body neurons but no detectable calcium or cAMP increases.