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Research ArticleBasic Science Investigation

Progressive Metabolic and Structural Cerebral Perturbations After Traumatic Brain Injury: An In Vivo Imaging Study in the Rat

Ying R. Liu, Lisa Cardamone, R. Edward Hogan, Marie-Claude Gregoire, John P. Williams, Rod J. Hicks, David Binns, Amelia Koe, Nigel C. Jones, Damian E. Myers, Terence J. O'Brien and Viviane Bouilleret
Journal of Nuclear Medicine November 2010, 51 (11) 1788-1795; DOI: https://doi.org/10.2967/jnumed.110.078626
Ying R. Liu
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Lisa Cardamone
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R. Edward Hogan
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Marie-Claude Gregoire
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John P. Williams
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Rod J. Hicks
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David Binns
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Amelia Koe
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Nigel C. Jones
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Damian E. Myers
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Terence J. O'Brien
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Viviane Bouilleret
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Abstract

Traumatic brain injury (TBI) has a high incidence of long-term neurologic and neuropsychiatric morbidity. Metabolic and structural changes in rat brains were assessed after TBI using serial 18F-FDG PET and 3-dimensional MRI in vivo. Methods: Rats underwent lateral fluid percussion injury (FPI; n = 16) or a sham procedure (n = 11). PET and MR images were acquired at 1 wk and at 1, 3, and 6 mo after injury. Morphologic changes were assessed using MRI-based regions of interest, and hippocampal shape changes were assessed with large-deformation high-dimensional mapping. Metabolic changes were assessed using region-of-interest analysis and statistical parametric mapping with the flexible factorial analysis. Anxiety-like behavior and learning were assessed at 1, 3, and 6 mo after injury. Results: PET analyses showed widespread hypometabolism in injured rats, in particular involving the ipsilateral cortex, hippocampus, and amygdalae, present at 1 wk after FPI, most prominent at 1 mo, and then decreasing. Compared with the sham group, rats in the FPI group had decreased structural volume which progressively increased over 3–6 mo, occurring in the ipsilateral cortex, hippocampus, and ventricles after FPI (P < 0.05). Large-deformation high-dimensional mapping showed evolving hippocampal shape changes across the 6 mo after FPI. Injured rats displayed increased anxiety-like behavior (P < 0.05), but there were no direct correlations between the severity of the behavior abnormalities and functional or structural imaging changes. Conclusion: In selected brain structures, FPI induces early hypometabolism and delayed progressive atrophic changes that are dynamic and continue to evolve for months. These findings have implications for the understanding of the pathophysiology and evolution of long-term neurologic morbidity following TBI, and indicate an extended window for targeted neuroprotective interventions.

  • traumatic brain injury
  • rat
  • 18F-FDG PET
  • MRI
  • anxiety

Footnotes

  • ↵* Contributed equally to this work.

  • © 2010 by Society of Nuclear Medicine
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Journal of Nuclear Medicine: 51 (11)
Journal of Nuclear Medicine
Vol. 51, Issue 11
November 1, 2010
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Progressive Metabolic and Structural Cerebral Perturbations After Traumatic Brain Injury: An In Vivo Imaging Study in the Rat
Ying R. Liu, Lisa Cardamone, R. Edward Hogan, Marie-Claude Gregoire, John P. Williams, Rod J. Hicks, David Binns, Amelia Koe, Nigel C. Jones, Damian E. Myers, Terence J. O'Brien, Viviane Bouilleret
Journal of Nuclear Medicine Nov 2010, 51 (11) 1788-1795; DOI: 10.2967/jnumed.110.078626

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Progressive Metabolic and Structural Cerebral Perturbations After Traumatic Brain Injury: An In Vivo Imaging Study in the Rat
Ying R. Liu, Lisa Cardamone, R. Edward Hogan, Marie-Claude Gregoire, John P. Williams, Rod J. Hicks, David Binns, Amelia Koe, Nigel C. Jones, Damian E. Myers, Terence J. O'Brien, Viviane Bouilleret
Journal of Nuclear Medicine Nov 2010, 51 (11) 1788-1795; DOI: 10.2967/jnumed.110.078626
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