Public Dandisets

Active Touch and Self-Motion Encoding by Merkel Cell-Associated Afferents

1
DOI: 10.48324/dandi.000226/0.230607.1747
ID: 0002260.230607.1747
Contact Severson, Kyle
File Count 60
Size 13.7 GB
Created June 7, 2023
Last update June 7, 2023
Licenses: spdx:CC-BY-4.0
Access Information: dandi:OpenAccess

Touch perception depends on integrating signals from multiple types of peripheral mechanoreceptors. Merkel-cell associated afferents are thought to play a major role in form perception by encoding surface features of touched objects. However, activity of Merkel afferents during active touch has not been directly measured. Here, we show that Merkel and unidentified slowly adapting afferents in the...

[ + see more ]
Contributors
Severson, Kyle ORCID logo
Xu, Duo ORCID logo
Van de Loo, Margaret
Bai, Ling ORCID logo
Ginty, David D
O'Connor, Daniel H ORCID logo
Funding information
Whitehall Foundation
Esther A. & Joseph Klingenstein Fund
National Institutes of Health
- Award Number: R01NS34814, P30NS050274, R01NS089652
Related resources
Active Touch and Self-Motion Encoding by Merkel Cell-Associated Afferents
ID: https://doi.org/10.1016/j.neuron.2017.03.045
Relation: dcite:IsDescribedBy
Assets Summary
Species
Mus musculus - House mouse
Approach
electrophysiological approach
behavioral approach
Data Standard
Neurodata Without Borders (NWB)
RRID:SCR_015242
Number Of Subjects
43
Variable Measured
Units
BehavioralTimeSeries
ProcessingModule
Measurement Technique
analytical technique
behavioral technique
spike sorting technique
Dandiset Actions
Files
Owners
Ben Dichter
Luiz Tauffer
Duo Xu
Daniel O'Connor
Versions
0.230607.1747
Jun 7, 2023