Calcium imaging with genetically encoded indicators in behaving primates

Understanding the neural basis of behaviour requires studying brain activity in behaving subjects using complementary techniques that measure neural responses at multiple spatial scales, and developing computational tools for understanding the mapping between these measurements. Here we report the f...

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Main Authors: Eyal Seidemann, Yuzhi Chen, Yoon Bai, Spencer C Chen, Preeti Mehta, Bridget L Kajs, Wilson S Geisler, Boris V Zemelman
Format: Article
Language:English
Published: eLife Sciences Publications Ltd 2016-07-01
Series:eLife
Subjects:
Online Access:https://elifesciences.org/articles/16178
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spelling doaj-cea590d4fa74453cb0e8507ff5135dfb2021-05-05T00:29:49ZengeLife Sciences Publications LtdeLife2050-084X2016-07-01510.7554/eLife.16178Calcium imaging with genetically encoded indicators in behaving primatesEyal Seidemann0https://orcid.org/0000-0003-2841-5948Yuzhi Chen1Yoon Bai2Spencer C Chen3Preeti Mehta4Bridget L Kajs5Wilson S Geisler6Boris V Zemelman7Center for Perceptual Systems, University of Texas, Austin, United States; Department of Psychology, University of Texas, Austin, United States; Department of Neuroscience, University of Texas, Austin, United StatesCenter for Perceptual Systems, University of Texas, Austin, United States; Department of Psychology, University of Texas, Austin, United States; Department of Neuroscience, University of Texas, Austin, United StatesCenter for Perceptual Systems, University of Texas, Austin, United States; Department of Psychology, University of Texas, Austin, United States; Department of Neuroscience, University of Texas, Austin, United StatesCenter for Perceptual Systems, University of Texas, Austin, United States; Department of Psychology, University of Texas, Austin, United States; Department of Neuroscience, University of Texas, Austin, United StatesDepartment of Neuroscience, University of Texas, Austin, United States; Center for Learning and Memory, University of Texas, Austin, United StatesDepartment of Neuroscience, University of Texas, Austin, United States; Center for Learning and Memory, University of Texas, Austin, United StatesCenter for Perceptual Systems, University of Texas, Austin, United States; Department of Psychology, University of Texas, Austin, United StatesDepartment of Neuroscience, University of Texas, Austin, United States; Center for Learning and Memory, University of Texas, Austin, United StatesUnderstanding the neural basis of behaviour requires studying brain activity in behaving subjects using complementary techniques that measure neural responses at multiple spatial scales, and developing computational tools for understanding the mapping between these measurements. Here we report the first results of widefield imaging of genetically encoded calcium indicator (GCaMP6f) signals from V1 of behaving macaques. This technique provides a robust readout of visual population responses at the columnar scale over multiple mm2 and over several months. To determine the quantitative relation between the widefield GCaMP signals and the locally pooled spiking activity, we developed a computational model that sums the responses of V1 neurons characterized by prior single unit measurements. The measured tuning properties of the GCaMP signals to stimulus contrast, orientation and spatial position closely match the predictions of the model, suggesting that widefield GCaMP signals are linearly related to the summed local spiking activity.https://elifesciences.org/articles/16178behaving macaquecalcium indicatorwidefield imaging
collection DOAJ
language English
format Article
sources DOAJ
author Eyal Seidemann
Yuzhi Chen
Yoon Bai
Spencer C Chen
Preeti Mehta
Bridget L Kajs
Wilson S Geisler
Boris V Zemelman
spellingShingle Eyal Seidemann
Yuzhi Chen
Yoon Bai
Spencer C Chen
Preeti Mehta
Bridget L Kajs
Wilson S Geisler
Boris V Zemelman
Calcium imaging with genetically encoded indicators in behaving primates
eLife
behaving macaque
calcium indicator
widefield imaging
author_facet Eyal Seidemann
Yuzhi Chen
Yoon Bai
Spencer C Chen
Preeti Mehta
Bridget L Kajs
Wilson S Geisler
Boris V Zemelman
author_sort Eyal Seidemann
title Calcium imaging with genetically encoded indicators in behaving primates
title_short Calcium imaging with genetically encoded indicators in behaving primates
title_full Calcium imaging with genetically encoded indicators in behaving primates
title_fullStr Calcium imaging with genetically encoded indicators in behaving primates
title_full_unstemmed Calcium imaging with genetically encoded indicators in behaving primates
title_sort calcium imaging with genetically encoded indicators in behaving primates
publisher eLife Sciences Publications Ltd
series eLife
issn 2050-084X
publishDate 2016-07-01
description Understanding the neural basis of behaviour requires studying brain activity in behaving subjects using complementary techniques that measure neural responses at multiple spatial scales, and developing computational tools for understanding the mapping between these measurements. Here we report the first results of widefield imaging of genetically encoded calcium indicator (GCaMP6f) signals from V1 of behaving macaques. This technique provides a robust readout of visual population responses at the columnar scale over multiple mm2 and over several months. To determine the quantitative relation between the widefield GCaMP signals and the locally pooled spiking activity, we developed a computational model that sums the responses of V1 neurons characterized by prior single unit measurements. The measured tuning properties of the GCaMP signals to stimulus contrast, orientation and spatial position closely match the predictions of the model, suggesting that widefield GCaMP signals are linearly related to the summed local spiking activity.
topic behaving macaque
calcium indicator
widefield imaging
url https://elifesciences.org/articles/16178
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AT yuzhichen calciumimagingwithgeneticallyencodedindicatorsinbehavingprimates
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AT bridgetlkajs calciumimagingwithgeneticallyencodedindicatorsinbehavingprimates
AT wilsonsgeisler calciumimagingwithgeneticallyencodedindicatorsinbehavingprimates
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