Public Dandisets

Unique neural activity states predict action selection in response to visual threat

1
ID: 001869DRAFT
Contact Zucker-Scharff, Ilana
File Count 10
Size 1.5 TB
Created June 13, 2026
Last update July 27, 2026
Licenses: spdx:CC-BY-4.0
Access Information: dandi:OpenAccess

To survive, animals must select contextually appropriate behavioral responses to threatening sensory stimuli that are shaped by both internal and locomotor state. However, how the circuits that process specific sensory stimuli might disseminate information to, and be affected by, other brain regions whose activities reflect these states is incompletely understood. To address this gap, we examined...

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Keywords:
brain
locomotion
whole brain
loom
Contributors
Zucker-Scharff, Ilana
Brezovec, Bella ORCID logo
Hao, Alex ORCID logo
Choi, Minseung ORCID logo
Wang, Yandan ORCID logo
Su, Sharon ORCID logo
Clandinin, Thomas ORCID logo
Funding information
NIH
- Award Number: R01EY022638
NIH
- Award Number: P30EY026877
Simons Foundation
Stanford School of Medicine
Department of Defense
Anatomy
Related resources
ZENDO repository
ID: ZENDO repository
Relation: dcite:IsContinuedBy
GitHub repository
ID: GitHub repository
Relation: dcite:IsContinuedBy
Assets Summary
Species
Drosophila melanogaster - Fruit fly
Approach
microscopy approach; cell population imaging
behavioral approach
Data Standard
Neurodata Without Borders (NWB)
RRID:SCR_015242
Number Of Subjects
13
Variable Measured
ImagingPlane
OpticalChannel
TwoPhotonSeries
SpatialSeries
Position
CompassDirection
ProcessingModule
Measurement Technique
surgical technique
two-photon microscopy technique
behavioral technique
analytical technique
Dandiset Actions
Files
Owners
Ilana Zucker-Scharff
Versions