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Research Article

Clinical correlations of proton magnetic resonance spectroscopy findings in acute phase after mild traumatic brain injury

, , , , , , , , & show all
Pages 341-346 | Received 08 Jul 2013, Accepted 09 Nov 2013, Published online: 30 Dec 2013

References

  • Grindel SH, Lovell MR, Collins MW. The assessment of sport-related concussion: The evidence behind neuropsychological testing and management. Clinical Journal of Sport Medicine 2001;11:134–143
  • Vos PE, Alekseenko Y, Battistin L, Ehler E, Gerstenbrand F, Muresanu DF, Potapov A, Stepan CA, Traubner P, Vecsei L, et al. Mild traumatic brain injury. European Journal of Neurology 2012;19:191–198
  • McCullough BJ, Jarvik JG. Diagnosis of concussion: The role of imaging now and in the future. Physical Medicine Rehabilitation Clinics of North America 2011;22:635–652
  • Hughes DG, Jackson A, Mason DL, Berry E, Hollis S, Yates DW. Abnormalities on magnetic resonance imaging seen acutely following mild traumatic brain injury: Correlation with neuropsychological tests and delayed recovery. Neuroradiology 2004;46:550–558
  • Kurča E, Sivák S, Kučera P. Impaired cognitive functions in mild traumatic brain injury patients with normal and pathologic magnetic resonance imaging. Neuroradiology 2006;48:661–669
  • Gonzalez PG, Walker MT. Imaging modalities in mild traumatic brain injury and sports concussion. PM&R 2011 Oct;3(10 Suppl 2):S413–424
  • Johnson B, Zhang K, Gay M, Neuberger T, Horovitz S, Hallett M, Sebastianelli W, Slobounov S. Metabolic alterations in corpus callosum may compromise brain functional connectivity in MTBI patients: An 1H-MRS study. Neuroscience Letters 2012;509:5–8
  • Johnson B, Gay M, Zhang K, Neuberger T, Horovitz SG, Hallett M, Sebastianelli W, Slobounov S. The use of magnetic resonance spectroscopy in the subacute evaluation of athletes recovering from single and multiple mild traumatic brain injury. Journal of Neurotrauma 2012;29:2297–2304
  • Gasparovic C, Yeo R, Mannell M, Ling J, Elgie R, Phillips J, Doezema D, Mayer AR. Neurometabolite concentrations in gray and white matter in mild traumatic brain injury: An 1H-magnetic resonance spectroscopy study. Journal of Neurotrauma 2009;26:1635–1643
  • Yeo RA, Gasparovic C, Merideth F, Ruhl D, Doezema D, Mayer AR. A longitudinal proton magnetic resonance spectroscopy study of mild traumatic brain injury. Journal of Neurotrauma 2011;28:1–11
  • Govindaraju V, Gauger GE, Manley GT, Ebel A, Meeker M, Maudsley AA. Volumetric proton spectroscopic imaging of mild traumatic brain injury. American Journal of Neuroradiology 2004;25:730–737
  • Vagnozzi R, Signoretti S, Cristofori L, Alessandrini F, Floris R, Isgrò E, Ria A, Marziale S, Zoccatelli G, Tavazzi B, et al. Assessment of metabolic brain damage and recovery following mild traumatic brain injury: A multicentre, proton magnetic resonance spectroscopic study in concussed patients. Brain 2010;133:3232–3242
  • Vagnozzi R, Signoretti S, Floris R, Marziali S, Manara M, Amorini AM, Belli A, Di Pietro V, D’urso S, Pastore FS, et al. Decrease in N-Acetylaspartate following concussion may be coupled to decrease in Creatine. Journal of Head Trauma Rehabilitation 2013 Jul--Aug;28(4):284--92
  • Kirov II, Tal A, Babb JS, Reaume J, Bushnik T, Ashman T, Flanagan SR, Grossman RI, Gonen O. Proton MR spectroscopy correlates diffuse axonal abnormalities with post-concussive symptoms in mild traumatic brain injury. Journal of Neurotrauma 2013;30:1200–1204
  • Kirov II, Tal A, Babb JS, Lui YW, Grossman RI, Gonen O. Diffuse axonal injury in mild traumatic brain injury: A 3D multivoxel proton MR spectroscopy study. Journal of Neurology 2013;260:242–252
  • Cohen BA, Inglese M, Rusinek H, Babb JS, Grossman RI, Gonen O. Proton MR spectroscopy and MRI-volumetry in mild traumatic brain injury. American Journal of Neuroradiology 2007;28:907–913
  • Henry LC, Tremblay S, Leclerc S, Khiat A, Boulanger Y, Ellemberg D, Lassonde M. Metabolic changes in concussed American football players during the acute and chronic post-injury phases. BMC Neurology 2011;11:105
  • Henry LC, Tremblay S, Boulanger Y, Ellemberg D, Lassonde M. Neurometabolic changes in the acute phase after sports concussions correlate with symptom severity. Journal of Neurotrauma 2010;27:65–76
  • Belanger HG, Vanderploeg RD. The neuropsychological impact of sports-related concussion: A meta-analysis. Journal of the International Neuropsychological Society 2005;11:345–357
  • Carroll LJ, Cassidy JD, Holm L, Kraus J, Coronado VG; WHO Collaborating Centre Task Force on Mild Traumatic Brain Injury. Methodological issues and research recommendations for mild traumatic brain injury: The WHO Collaborating Centre Task Force on Mild Traumatic Brain Injury. Journal of Rehabilitation Medicine 2004 Feb;(43 Suppl):113–125
  • Aubry M, Cantu R, Dvorak J, Graf-Baumann T, Johnston K, Kelly J, Lovell M, McCrory P, Meeuwisse W, Schamasch P. Concussion in Sport Group. Summary and agreement statement of the First International Conference on Concussion in Sport, Vienna 2001. Recommendations for the improvement of safety and health of athletes who may suffer concussive injuries. British Journal of Sports Medicine 2002;36:6–10
  • Johnston KM, McCrory P, Mohtadi NG, Meeuwisse W. Evidence- based review of sport-related concussion: Clinical science. Clinical Journal of Sport Medicine 2001;11:150–159
  • Reitan RM. Validity of the Trail Making test as an indicator of organic brain damage. Perceptual & Motor Skills 1958;8:271–276
  • Kučera M. Test koncentrace pozornosti. Bratislava: Psychodiagnostické a didaktické testy; 1980
  • Wechsler D. Wechsler Memory Scale. 3rd ed (WMS-III, Slovak version). Bratislava: Psychodiagnostika; 1999
  • Stroop JR. Studies of interference in serial verbal reactions. Journal of Experimental Psychology 1935;18:643–662
  • Provencher SW. Estimation of metabolite concentrations from localized in vivo proton NMR spectra. Magnetic Resonance Medicine 1993;30:672–679
  • Giza CC, Hovda DA. The neurometabolic cascade of concussion. Journal of Athletic Training 2001;36:228–235
  • Marino S, Ciurleo R, Bramanti P, Federico A, De Stefano N. 1H-MR spectroscopy in traumatic brain injury. Neurocritical Care 2011;14:127–133
  • Govind V, Gold S, Kaliannan K, Saigal G, Falcone S, Arheart KL, Harris L, Jagid J, Maudsley AA. Whole-brain proton MR spectroscopic imaging of mild-to-moderate traumatic brain injury and correlation with neuropsychological deficits. Journal of Neurotrauma 2010;27:483–496
  • Garnett MR, Blamire AM, Corkill RG, Cadoux-Hudson TA, Rajagopalan B, Styles P. Early proton magnetic resonance spectroscopy in normal-appearing brain correlates with outcome in patients following traumatic brain injury. Brain 2000;123:2046–2054
  • Ariza M, Junqué C, Mataró M, Poca MA, Bargalló N, Olondo M, Sahuquillo J. Neuropsychological correlates of basal ganglia and medial temporal lobe NAA/Cho reductions in traumatic brain injury. Archives of Neurology 2004;61:541–544
  • Jane JA, Steward O, Gennarelli T. Axonal degeneration induced by experimental noninvasive minor head injury. Journal of Neurosurgery 1985;62:96–100
  • Brown WJ, Yoshida N, Canty T, Verity MA. Experimental concussion. Ultrastructural and biochemical correlates. American Journal of Pathology 1972;67:41–68

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