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Associations Between Interhemispheric Functional Connectivity and the Automated Neuropsychological Assessment Metrics (ANAM) in Civilian Mild TBI

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Publisher Springer
Date 2014 Feb 22
PMID 24557591
Citations 25
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Abstract

This study investigates cognitive deficits and alterations in resting state functional connectivity in civilian mild traumatic brain injury (mTBI) participants with high and low symptoms. Forty-one mTBI participants completed a resting state fMRI scan and the Automated Neuropsychological Assessment Metrics (ANAM) during initial testing (<10 days of injury) and a 1 month follow up. Data were compared to 30 healthy control subjects. Results from the ANAM demonstrate that mTBI participants performed significantly worse than controls on the code substitution delayed subtest (p = 0.032). [corrected]. Among the mTBI patients, high symptom mTBI participants performed worse than those with low symptoms on the code substitution delayed (p = 0.017), code substitution (p = 0.012), repeated simple reaction time (p = 0.031), and weighted throughput score (p = 0.019). [corrected]. Imaging results reveal that during the initial visit, low symptom mTBI participants had reduced interhemispheric functional connectivity (IH-FC) within the lateral parietal lobe (p = 0.020); however, during follow up, high symptom mTBI participants showed reduced IH-FC compared to the control group within the dorsolateral prefrontal cortex (DLPFC) (p = 0.013). Reduced IH-FC within the DLPFC during the follow-up was associated with reduced cognitive performance. Together, these findings suggest that reduced rs-FC may contribute to the subtle cognitive deficits noted in high symptom mTBI participants compared to control subjects and low symptom mTBI participants.

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References
1.
Vincent A, Roebuck-Spencer T, Gilliland K, Schlegel R . Automated Neuropsychological Assessment Metrics (v4) Traumatic Brain Injury Battery: military normative data. Mil Med. 2012; 177(3):256-69. DOI: 10.7205/milmed-d-11-00289. View

2.
Hillary F, Genova H, Medaglia J, Fitzpatrick N, Chiou K, Wardecker B . The nature of processing speed deficits in traumatic brain injury: is less brain more?. Brain Imaging Behav. 2010; 4(2):141-54. DOI: 10.1007/s11682-010-9094-z. View

3.
Dischinger P, Ryb G, Kufera J, Auman K . Early predictors of postconcussive syndrome in a population of trauma patients with mild traumatic brain injury. J Trauma. 2009; 66(2):289-96. DOI: 10.1097/TA.0b013e3181961da2. View

4.
Arfanakis K, Haughton V, Carew J, Rogers B, Dempsey R, Meyerand M . Diffusion tensor MR imaging in diffuse axonal injury. AJNR Am J Neuroradiol. 2002; 23(5):794-802. PMC: 7974716. View

5.
Zhou Y, Milham M, Lui Y, Miles L, Reaume J, Sodickson D . Default-mode network disruption in mild traumatic brain injury. Radiology. 2012; 265(3):882-92. PMC: 3504316. DOI: 10.1148/radiol.12120748. View