Literature DB >> 24301336

Octopus visual system: a functional MRI model for detecting neuronal electric currents without a blood-oxygen-level-dependent confound.

Xia Jiang1, Hanbing Lu, Shuichi Shigeno, Li-Hai Tan, Yihong Yang, Clifton W Ragsdale, Jia-Hong Gao.   

Abstract

PURPOSE: Despite the efforts that have been devoted to detecting the transient magnetic fields generated by neuronal firing, the conclusion that a functionally relevant signal can be measured with MRI is still controversial. For human studies of neuronal current MRI (nc-MRI), the blood-oxygen-level-dependent (BOLD) effect remains an irresolvable confound. For tissue studies where hemoglobin is removed, natural sensory stimulation is not possible. This study investigates the feasibility of detecting a physiologically induced nc-MRI signal in vivo in a BOLD-free environment.
METHODS: The cephalopod mollusc Octopus bimaculoides has vertebrate-like eyes, large optic lobes (OLs), and blood that does not contain hemoglobin. Visually evoked potentials were measured in the octopus retina and OL by electroretinogram and local field potential. nc-MRI scans were conducted at 9.4 Tesla to capture these activities.
RESULTS: Electrophysiological recording detected strong responses in the retina and OL in vivo; however, nc-MRI failed to demonstrate any statistically significant signal change with a detection threshold of 0.2° for phase and 0.2% for magnitude. Experiments in a dissected eye-OL preparation yielded similar results.
CONCLUSION: These findings in a large hemoglobin-free nervous system suggest that sensory evoked neuronal magnetic fields are too weak for direct detection with current MRI technology.
Copyright © 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  cephalopod; electroretinogram; functional MRI; local field potential; optic lobe; retina

Mesh:

Year:  2013        PMID: 24301336      PMCID: PMC4041854          DOI: 10.1002/mrm.25051

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  44 in total

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Authors:  Petr Volegov; Andrei N Matlachov; Michelle A Espy; John S George; Robert H Kraus
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Authors:  D M Dooley; R A Scott; J Ellinghaus; E I Solomon; H B Gray
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8.  In vivo nuclear magnetic resonance imaging and spectroscopy of aquatic organisms.

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9.  Magnetic properties of Cancer magister hemocyanin.

Authors:  T H Moss; D C Gould; A Ehrenberg; J S Loehr; H S Mason
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10.  The electroretinogram of the intact anesthetized octopus.

Authors:  D I Hamasaki
Journal:  Vision Res       Date:  1968-03       Impact factor: 1.886

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  4 in total

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2.  Establishing an Octopus Ecosystem for Biomedical and Bioengineering Research.

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Authors:  Russell E Jacobs
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