Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice
Hippocampal inhibitory interneurons exhibit a large diversity of dendritic Ca2+ mechanisms that are involved in the induction of Hebbian and anti-Hebbian synaptic plasticity. High resolution imaging techniques allowed examining somatic Ca2+ signals and, accordingly, the recruitment of hippocampal in...
Κύριοι συγγραφείς: | , , , |
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Μορφή: | Journal article |
Έκδοση: |
Frontiers Media
2019
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_version_ | 1826307235537485824 |
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author | Francavilla, R Villette, V Martel, O Topolnik, L |
author_facet | Francavilla, R Villette, V Martel, O Topolnik, L |
author_sort | Francavilla, R |
collection | OXFORD |
description | Hippocampal inhibitory interneurons exhibit a large diversity of dendritic Ca2+ mechanisms that are involved in the induction of Hebbian and anti-Hebbian synaptic plasticity. High resolution imaging techniques allowed examining somatic Ca2+ signals and, accordingly, the recruitment of hippocampal interneurons in awake behaving animals. However, little is still known about dendritic Ca2+ activity in interneurons during different behavioral states. Here, we used two-photon Ca2+ imaging in mouse hippocampal CA1 interneurons to reveal Ca2+ signal patterns in interneuron dendrites during animal locomotion and immobility. Despite overall variability in dendritic Ca2+ transients (CaTs) across different cells and dendritic branches, we report consistent behavior state-dependent organization of Ca2+ signaling in interneurons. As such, spreading regenerative CaTs dominated in dendrites during locomotion, whereas both spreading and localized Ca2+ signals were seen during immobility. Thus, these data indicate that while animal locomotion is associated with widespread Ca2+ elevations in interneuron dendrites that may reflect regenerative activity, local CaTs that may be related to synaptic activity become apparent during animal quiet state. |
first_indexed | 2024-03-07T06:59:52Z |
format | Journal article |
id | oxford-uuid:ff5e6266-25d6-41cb-b587-a90018c5ddc4 |
institution | University of Oxford |
last_indexed | 2024-03-07T06:59:52Z |
publishDate | 2019 |
publisher | Frontiers Media |
record_format | dspace |
spelling | oxford-uuid:ff5e6266-25d6-41cb-b587-a90018c5ddc42022-03-27T13:44:27ZCalcium dynamics in dendrites of hippocampal CA1 interneurons in awake miceJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ff5e6266-25d6-41cb-b587-a90018c5ddc4Symplectic Elements at OxfordFrontiers Media2019Francavilla, RVillette, VMartel, OTopolnik, LHippocampal inhibitory interneurons exhibit a large diversity of dendritic Ca2+ mechanisms that are involved in the induction of Hebbian and anti-Hebbian synaptic plasticity. High resolution imaging techniques allowed examining somatic Ca2+ signals and, accordingly, the recruitment of hippocampal interneurons in awake behaving animals. However, little is still known about dendritic Ca2+ activity in interneurons during different behavioral states. Here, we used two-photon Ca2+ imaging in mouse hippocampal CA1 interneurons to reveal Ca2+ signal patterns in interneuron dendrites during animal locomotion and immobility. Despite overall variability in dendritic Ca2+ transients (CaTs) across different cells and dendritic branches, we report consistent behavior state-dependent organization of Ca2+ signaling in interneurons. As such, spreading regenerative CaTs dominated in dendrites during locomotion, whereas both spreading and localized Ca2+ signals were seen during immobility. Thus, these data indicate that while animal locomotion is associated with widespread Ca2+ elevations in interneuron dendrites that may reflect regenerative activity, local CaTs that may be related to synaptic activity become apparent during animal quiet state. |
spellingShingle | Francavilla, R Villette, V Martel, O Topolnik, L Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title | Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title_full | Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title_fullStr | Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title_full_unstemmed | Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title_short | Calcium dynamics in dendrites of hippocampal CA1 interneurons in awake mice |
title_sort | calcium dynamics in dendrites of hippocampal ca1 interneurons in awake mice |
work_keys_str_mv | AT francavillar calciumdynamicsindendritesofhippocampalca1interneuronsinawakemice AT villettev calciumdynamicsindendritesofhippocampalca1interneuronsinawakemice AT martelo calciumdynamicsindendritesofhippocampalca1interneuronsinawakemice AT topolnikl calciumdynamicsindendritesofhippocampalca1interneuronsinawakemice |