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metadata.yaml
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about: []
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status: dandi:OpenAccess
assetsSummary:
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schemaKey: ApproachType
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dataStandard:
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name: Neurodata Without Borders (NWB)
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- name: spike sorting technique
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numberOfSubjects: 43
schemaKey: AssetsSummary
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name: Mus musculus - House mouse
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citation: Severson, Kyle; Xu, Duo; Van de Loo, Margaret; Bai, Ling; Ginty, David D;
O'Connor, Daniel H (2023) Active Touch and Self-Motion Encoding by Merkel Cell-Associated
Afferents (Version draft) [Data set]. DANDI archive. https://dandiarchive.org/dandiset/000226/draft
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email: ksseverson57@gmail.com
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dateCreated: '2022-03-21T12:35:09.864743+00:00'
datePublished: '2023-06-07T17:47:54.403950+00:00'
description: 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 whisker system of behaving mice respond to both self-motion and active touch.
Touch responses were dominated by sensitivity to bending moment (torque) at the
base of the whisker and its rate of change and largely explained by a simple mechanical
model. Self-motion responses encoded whisker position within a whisk cycle (phase),
not absolute whisker angle, and arose from stresses reflecting whisker inertia and
activity of specific muscles. Thus, Merkel afferents send to the brain multiplexed
information about whisker position and surface features, suggesting that proprioception
and touch converge at the earliest neural level.
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