Public Dandisets

State-dependent modulation of spiny projection neurons controls levodopa-induced dyskinesia in a mouse model of Parkinson’s disease

0
DOI: 10.48324/dandi.001538/0.260527.1302
ID: 0015380.260527.1302
Contact Wokosin, David
File Count 468
Size 28 GB
Created May 27, 2026
Last update May 27, 2026
Licenses: spdx:CC-BY-4.0
Access Information: dandi:OpenAccess

This Dandiset contains all raw and primary-processed data underlying the study “State-dependent modulation of striatal spiny projection neurons controls levodopa-induced dyskinesia in a mouse model of Parkinson’s disease” The collection spans multimodal recordings from adult C57BL/6J mice rendered hemiparkinsonian with a unilateral 6-hydroxydopamine (6-OHDA) lesion of the medial forebrain bundle,...

[ + see more ]
Keywords:
Parkinson's disease
neurodegeneration
dopamine depletion
striatum
levodopa-induced dyskinesia
dSPNs
iSPNs
indirect pathway spiny projection neuron
LID
muscarinic M1 receptor
CalDAG-GEFI
cholinergic interneurons
Subject matter:
Parkinson's disease
Striatum
indirect pathway medium spiny neuron
direct pathway medium spiny neuron
Contributors
Zhai, Shenyu ORCID logo
Cui, Qiao-Ling ORCID logo
Wokosin, David ORCID logo
Tkatch, Tatiana ORCID logo
Crittenden, Jill ORCID logo
Graybiel, Ann ORCID logo
Surmeier, D. James ORCID logo
Funding information
National Institutes of Health
- Award Number: NS34696
Michael J. Fox Foundation
- Award Number: ASAP020551
National Institute of Neurological Disorders and Stroke
- Award Number: NS34696
JPB Foundation
Related resources
State-dependent modulation of spiny projection neurons controls levodopa-induced dyskinesia in a mouse model of Parkinson’s disease
ID: https://doi.org/10.1101/2025.01.02.631090
Resource Type: dcite:Preprint
Repo: bioRxiv
Relation: dcite:IsDescribedBy
Key Resources Table_Zhai et al. 2025_rev2 in .csv format
ID: https://doi.org/10.5281/zenodo.14589126.
Resource Type: dcite:Dataset
Repo: zenodo
Relation: dcite:IsSupplementedBy
State-dependent modulation of spiny projection neurons controls levodopa-induced dyskinesia in a mouse model of Parkinson’s disease
ID: https://doi.org/10.1126/sciadv.adv8224
Resource Type: dcite:JournalArticle
Repo: Science Advances
Relation: dcite:IsDescribedBy
Assets Summary
Species
Mus musculus - House mouse
Approach
microscopy approach; cell population imaging
optogenetic approach
electrophysiological approach
Data Standard
Neurodata Without Borders (NWB)
RRID:SCR_015242
Number Of Subjects
185
Variable Measured
ProcessingModule
ImagingPlane
OpticalChannel
PlaneSegmentation
TwoPhotonSeries
VoltageClampSeries
OptogeneticSeries
CurrentClampSeries
CurrentClampStimulusSeries
Measurement Technique
analytical technique
two-photon microscopy technique
surgical technique
voltage clamp technique
current clamp technique
Dandiset Actions
Files
Owners
Ben Dichter
Heberto Mayorquin
Alessandra Trapani
Vernon
Versions
0.260527.1302
May 27, 2026