Correlation of hemodynamic and fluorescence signals under resting state conditions in mice's barrel field cortex

•A bimodal IOI—calcium imaging system was used to record resting state activity.•Neuronal and glial parts of fluorescence signal were retrieved with frequency filters.•Hemodynamic response and fluorescence signals correlation was computed.•Differences in correlation patterns were found between high...

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Published inNeuroscience letters Vol. 616; pp. 177 - 181
Main Authors Bélanger, Samuel, Oliveira Ferreira de Souza, Bruno, Casanova, Christian, Lesage, Frédéric
Format Journal Article
LanguageEnglish
Published Ireland Elsevier Ireland Ltd 11.03.2016
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Abstract •A bimodal IOI—calcium imaging system was used to record resting state activity.•Neuronal and glial parts of fluorescence signal were retrieved with frequency filters.•Hemodynamic response and fluorescence signals correlation was computed.•Differences in correlation patterns were found between high and low spectrum. Both neurons and astrocytes are known to affect local vascular response in the brain following neuronal activity. In order to differentiate the contributions of each cell type to the hemodynamic response during stimulation and resting state, intrinsic optical signal (IOI) was recorded synchronized with fluorescence imaging of calcium concentration sensitive dye Oregon Green BAPTA-1 AM. By changing the stimulation parameters (frequency and duration), it was possible to individually promote neuronal and glial responses and to compare them to levels of oxy (HbO), deoxy (HbR) and total (HbT) hemoglobin concentrations. Finally, resting state recordings were done to investigate the possible correlation between hemoglobin fluctuation and calcium transients, based on different frequency bands associated either with neuronal or glial activity.
AbstractList Both neurons and astrocytes are known to affect local vascular response in the brain following neuronal activity. In order to differentiate the contributions of each cell type to the hemodynamic response during stimulation and resting state, intrinsic optical signal (IOI) was recorded synchronized with fluorescence imaging of calcium concentration sensitive dye Oregon Green BAPTA-1 AM. By changing the stimulation parameters (frequency and duration), it was possible to individually promote neuronal and glial responses and to compare them to levels of oxy (HbO), deoxy (HbR) and total (HbT) hemoglobin concentrations. Finally, resting state recordings were done to investigate the possible correlation between hemoglobin fluctuation and calcium transients, based on different frequency bands associated either with neuronal or glial activity.
•A bimodal IOI—calcium imaging system was used to record resting state activity.•Neuronal and glial parts of fluorescence signal were retrieved with frequency filters.•Hemodynamic response and fluorescence signals correlation was computed.•Differences in correlation patterns were found between high and low spectrum. Both neurons and astrocytes are known to affect local vascular response in the brain following neuronal activity. In order to differentiate the contributions of each cell type to the hemodynamic response during stimulation and resting state, intrinsic optical signal (IOI) was recorded synchronized with fluorescence imaging of calcium concentration sensitive dye Oregon Green BAPTA-1 AM. By changing the stimulation parameters (frequency and duration), it was possible to individually promote neuronal and glial responses and to compare them to levels of oxy (HbO), deoxy (HbR) and total (HbT) hemoglobin concentrations. Finally, resting state recordings were done to investigate the possible correlation between hemoglobin fluctuation and calcium transients, based on different frequency bands associated either with neuronal or glial activity.
Author Bélanger, Samuel
Casanova, Christian
Oliveira Ferreira de Souza, Bruno
Lesage, Frédéric
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Keywords Resting state
Astrocytes
Barrel field cortex
Calcium fluorescence signal imaging
Neurovascular coupling
Intrinsic signal imaging
Language English
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Snippet •A bimodal IOI—calcium imaging system was used to record resting state activity.•Neuronal and glial parts of fluorescence signal were retrieved with frequency...
Both neurons and astrocytes are known to affect local vascular response in the brain following neuronal activity. In order to differentiate the contributions...
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SubjectTerms Aniline Compounds
Animals
Astrocytes
Barrel field cortex
Calcium - metabolism
Calcium fluorescence signal imaging
Cerebral Cortex - blood supply
Cerebral Cortex - metabolism
Fluoresceins
Fluorescence
Fluorescent Dyes
Hemodynamics
Hemoglobins - metabolism
Intrinsic signal imaging
Male
Mice, Inbred C57BL
Neuroglia - metabolism
Neurons - metabolism
Neurovascular coupling
Oxyhemoglobins - metabolism
Rest
Resting state
Title Correlation of hemodynamic and fluorescence signals under resting state conditions in mice's barrel field cortex
URI https://dx.doi.org/10.1016/j.neulet.2016.01.067
https://www.ncbi.nlm.nih.gov/pubmed/26850574
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https://search.proquest.com/docview/1790930660
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