In vivo characterization of traumatic brain injury neuropathology with structural and functional neuroimaging
- PMID: 17020478
- PMCID: PMC1942076
- DOI: 10.1089/neu.2006.23.1396
In vivo characterization of traumatic brain injury neuropathology with structural and functional neuroimaging
Abstract
Quantitative neuroimaging is increasingly used to study the effects of traumatic brain injury (TBI) on brain structure and function. This paper reviews quantitative structural and functional neuroimaging studies of patients with TBI, with an emphasis on the effects of diffuse axonal injury (DAI), the primary neuropathology in TBI. Quantitative structural neuroimaging has evolved from simple planometric measurements through targeted region-of-interest analyses to whole-brain analysis of quantified tissue compartments. Recent studies converge to indicate widespread volume loss of both gray and white matter in patients with moderate-to-severe TBI. These changes can be documented even when patients with focal lesions are excluded. Broadly speaking, performance on standard neuropsychological tests of speeded information processing are related to these changes, but demonstration of specific brain-behavior relationships requires more refined experimental behavioral measures. The functional consequences of these structural changes can be imaged with activation functional neuroimaging. Although this line of research is at an early stage, results indicate that TBI causes a more widely dispersed activation in frontal and posterior cortices. Further progress in analysis of the consequences of TBI on neural structure and function will require control of variability in neuropathology and behavior.
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References
-
- ABDEL-DAYEM HM, ABU-JUDEH H, KUMAR M, et al. SPECT brain perfusion abnormalities in mild or moderate traumatic brain injury. Clin Nucl Med. 1998;23:309–317. - PubMed
-
- ADAMS JH, DOYLE D, FORD I, GENNARELLI TA, GRAHAM DI, MCLELLAN DR. Diffuse axonal injury in head injury: definition, diagnosis and grading. Histopathology. 1989;15:49–59. - PubMed
-
- ADAMS JH, GRAHAM DI, MURRAY LS, SCOTT G. Diffuse axonal injury due to nonmissile head injury in humans: an analysis of 45 cases. Ann Neurol. 1982;12:557–563. - PubMed
-
- ALAVI A, MIROT A, NEWBERG A, et al. Fluorine-18-FDG evaluation of crossed cerebellar diaschisis in head injury. J Nucl Med. 1997;38:1717–1720. - PubMed
-
- ANDERSON CV, BIGLER ED. The role of caudate nucleus and corpus callosum atrophy in trauma-induced anterior horn dilation. Brain Inj. 1994;8:565–569. - PubMed
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