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Intrinsic signal optical imaging of visual brain activity: Tracking of fast cortical dynamics

  • Haidong D. Lu
  • , Gang Chen
  • , Junjie Cai
  • , Anna W. Roe

Research output: Contribution to journalArticlepeer-review

Abstract

Hemodynamic-based brain imaging techniques are typically incapable of monitoring brain activity with both high spatial and high temporal resolutions. In this study, we have used intrinsic signal optical imaging (ISOI), a relatively high spatial resolution imaging technique, to examine the temporal resolution of the hemodynamic signal. We imaged V1 responses in anesthetized monkey to a moving light spot. Movies of cortical responses clearly revealed a focus of hemodynamic response traveling across the cortical surface. Importantly, at different locations along the cortical trajectory, response timecourses maintained a similar tri-phasic shape and shifted sequentially across cortex with a predictable delay. We calculated the time between distinguishable timecourses and found that the temporal resolution of the signal at which two events can be reliably distinguished is about 80 milliseconds. These results suggest that hemodynamic-based imaging is suitable for detecting ongoing cortical events at high spatial resolution and with temporal resolution relevant for behavioral studies.

Original languageEnglish (US)
Pages (from-to)160-168
Number of pages9
JournalNeuroImage
Volume148
DOIs
StatePublished - Mar 1 2017

Funding

We thank Lisa Chu for surgical assistance and Jie Lu for imaging processing assistance. This work was supported by National Natural Science Foundation of China (31371111, 31530029, 31625012) to HDL; National Natural Science Foundation of China (31471052), Fundamental Research Funds for the Central Universities (2015QN81007), Zhejiang Provincial Natural Science Foundation of China (LR15C090001) to GC; NIH grant EY11744, National Natural Science Foundation of China (key project No. 81430010), National Hi-Tech Research and Development Program of China (No. 2015AA020515) to AWR; Vanderbilt Vision Research Center, and Vanderbilt University Center for Integrative & Cognitive Neuroscience.

FundersFunder number
Vanderbilt University Center for Integrative & Cognitive Neuroscience
Author National Institutes of Health National Institutes of Health National Institutes of Health National Institutes of Health The Bev Hartig Huntington's Disease Foundation National Institutes of Health81430010, EY11744
NIH Office of the DirectorP51OD011092
The National Natural Science Foundation of China31371111, 31530029, 31471052, 31625012
Natural Science Foundation of Zhejiang ProvinceLR15C090001
National High-tech Research and Development Program2015AA020515
Fundamental Research Funds for the Central Universities2015QN81007

    Keywords

    • Intrinsic signal optical imaging
    • Monkey
    • Temporal resolution
    • V1
    • Visual cortex

    ASJC Scopus subject areas

    • Neurology
    • Cognitive Neuroscience

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