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Research Article

Exaggerated reaction to novelty as a subclinical consequence of mild traumatic brain injury

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Pages 972-979 | Received 17 Sep 2013, Accepted 26 Jan 2014, Published online: 21 Mar 2014

References

  • ACRM. Definition of mild traumatic brain injury. Journal of Head Trauma Rehabilitation 1993;8:86–87
  • Carroll L, Cassidy J, Peloso PM, Borg J, vonHOlst H, Holm L. Prognosis for mild traumatic brain injury: Results of the WHO Collaborating Center Task Force on Mild Traumatic Brain Injury. Journal of Rehabilitation Medicine 2004;36(Suppl 43):84–105
  • Barr WB. Recovering from mild traumatic brain injury: What psychology has learned from sports concussion research. NYS Psychologist 2007;19:24–29
  • Halterman CI, Langan J, Drew A, Rodriguez E, Osternig LR, Chou L-S, van Donkelaar P. Tracking the recovery of visuospatial attention deficits in mild traumatic brain injury. Brain: A Journal of Neurology 2006;129:747–753
  • Malojcic B, Mubrin Z, Coric B, Susnic M, Spilich GJ. Consequences of mild traumatic brain injury on information processing assessed with attention and short-term memory tasks. Journal of Neurotrauma 2008;25:30–37
  • Paré N, Rabin LA, Fogel J, Pépin M. Mild traumatic brain injury and its sequelae: Characterisation of divided attention deficits. Neuropsychological Rehabilitation 2009;19:110–137
  • Ponsford J, Cameron P, Fitzgerald M, Grant M, Mikocka-Walus A. Long-term outcomes after uncomplicated mild traumatic brain injury: A comparison with trauma controls. Journal of Neurotrauma 2011;28:937–946
  • Schiehser DM, Delis DC, Filoteo JV, Delano-Wood L, Han SD, Jak AJ, Drake AI, Bondi MW. Are self-reported symptoms of executive dysfunction associated with objective executive function performance following mild to moderate traumatic brain injury? Journal of Clinical and Experimental Neuropsychology 2011;33:704–714
  • Belanger HG, Curtiss G, Demery JA, Lebowitz BK, Vanderploeg RD. Factors moderating neuropsychological outcomes following mild traumatic brain injury: A meta-analysis. Journal of the International Neuropsychological Society 2005;11:215–227
  • Schretlen DJ, Shapiro AM. A quantitative review of the effects of traumatic brain injury on cognitive functioning. International Review of Psychiatry 2003;15:341–349
  • Vanderploeg RD, Curtiss G, Belanger HG. Long-term neuropsychological outcomes following mild traumatic brain injury. Journal of the International Neuropsychological Society 2005;11:228–236
  • Ponsford J, Cameron P, Fitzgerald M, Grant M, Mikocka-Walus A, Schönberger M. Predictors of postconcussive symptoms 3 months after mild traumatic brain injury. Neuropsychology 2012;26:304–313
  • Snell DL, Surgenor LJ, Hay-Smith EJC, Siegert RJ. A systematic review of psychological treatments for mild traumatic brain injury: An update on the evidence. Journal of Clinical and Experimental Neuropsychology 2009;31:20–38
  • Shumskaya E, Andriessen TMJC, Norris DG, Vos PE. Abnormal whole-brain functional networks in homogeneous acute mild traumatic brain injury. Neurology 2012;79:175–182
  • Sundström A, Nilsson LG, Cruts M, Adolfsson R, van Broeckhoven C, Nyberg L. Fatigue before and after mild traumatic brain injury: Pre-post-injury comparisons in relation to Apolipoprotein E. Brain Injury 2007;21:1049–1054
  • Aoki Y, Inokuchi R, Gunshin M, Yahagi N, Suwa H. Diffusion tensor imaging studies of mild traumatic brain injury: A meta-analysis. Journal of Neurology, Neurosurgery & Psychiatry 2012;83:870–876
  • Shenton ME, Hamoda HM, Schneiderman JS, Bouix S, Pasternak O, Rathi Y, Vu MA, Purohit MP, Helmer K, Koerte I, et al. A review of magnetic resonance imaging and diffusion tensor imaging findings in mild traumatic brain injury. Brain Imaging and Behavior 2012;6:137–192
  • Pontifex MB, O’Connor PM, Broglio SP, Hillman CH. The association between mild traumatic brain injury history and cognitive control. Neuropsychologia 2009;47:3210–3216
  • 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
  • Mayer AR, Yang Z, Yeo RA, Pena A, Ling JM, Mannell MV, Stippler M, Mojtahed K. A functional MRI study of multimodal selective attention following mild traumatic brain injury. Brain Imaging and Behavior 2012;6:343–354
  • Chen JK, Johnston KM, Frey S, Petrides M, Worsley K, Ptito A. Functional abnormalities in symptomatic concussed athletes: An fMRI study. NeuroImage 2004;22:68–82
  • Slobounov S, Zhang K, Pennell D, Ray W, Johnson B, Sebastianelli W. Functional abnormalities in normally appearing athletes following mild traumatic brain injury: A functional MRI study. Experimental Brain Research 2010;202:341–354
  • Chen J-K, Johnston KM, Petrides M, Ptito A. Recovery From mild head injury in sports: Evidence from serial functional magnetic resonance imaging studies in male athletes. Clinical Journal of Sport Medicine 2008;18:241–247
  • Bryer EJ, Medaglia JD, Rostami S, Hillary FG. Neural recruitment after mild traumatic brain injury is task dependent: A meta-analysis. Journal of the International Neuropsychological Society 2013;19:751–762
  • Medaglia JD, Chiou KS, Slocomb J, Fitzpatrick NM, Wardecker BM, Ramanathan D, Vesek J, Good DC, Hillary FG. The Less BOLD, the Wiser: Support for the latent resource hypothesis after traumatic brain injury. Human Brain Mapping 2012;33:979–993
  • Cabeza R, Anderson ND, Locantore JK, McIntosh AR. Aging gracefully: Compensatory brain activity in high-performing older adults. NeuroImage 2002;17:1394–1402
  • Eyler LT, Sherzai A, Kaup AR, Jeste DV. A review of functional brain imaging correlates of successful cognitive aging. Biological Psychiatry 2011;70:115–122
  • Grady CL. Cognitive neuroscience of aging. Annals of the New York Academy of Sciences 2008;1124:127–144
  • Park DC, Reuter-Lorenz P. The adaptive brain: Aging and neurocognitive scaffolding. Annul Review of Psychology 2009;60:173–196
  • Slavin MJ, Brodaty H, Kochan NA, Crawford JD, Trollor JN, Draper B, Sachdev PS. Prevalence and predictors of “Subjective Cognitive Complaints” in the Sydney Memory and Ageing Study. The American Journal of Geriatric Psychiatry: Official Journal of the American Association for Geriatric Psychiatry 2010;18:701–710
  • Reisberg B, Prichep L, Mosconi L, John ER, Glodzik-Sobanska L, Boksay I, Monteiro I, Torossian C, Vedvyas A, Ashraf N, et al. The pre–mild cognitive impairment, subjective cognitive impairment stage of Alzheimer’s disease. Alzheimer's & Dementia 2008;4(Suppl 1):S98–S108
  • Jessen F, Wiese B, Bachmann C, Eifflaender-Gorfer S, Haller F, Kölsch H, Luck T, Mösch E, van den Bussche H, Wagner M, et al. Prediction of dementia by subjective memory impairment: Effects of severity and temporal association with cognitive impairment. Archives of General Psychiatry 2010;67:414–422
  • Hohman TJ, Beason-Held LL, Lamar M, Resnick SM. Subjective cognitive complaints and longitudinal changes in memory and brain function. Neuropsychology 2011;25:125–130
  • Suchy Y, Kraybill ML, Franchow E. Practice effect and beyond: Reaction to novelty as an independent predictor of cognitive decline among older adults. Journal of the International Neuropsychological Society 2011;17:1–11
  • Suchy Y, Derbidge C, Cope C. Behavioral Dyscontrol Scale-Electronic Version: First examination of reliability, validity, and incremental utility. Clinican Neuropsychologist 2005;19:4–26
  • Brovelli A, Laksiri N, Nazarian B, Meunier M, Boussaoud D. Understanding the neural computations of arbitrary visuomotor learning through FMRI and associative learning theory. Cerebral Cortex 2008;18:1485–1495
  • Jansma JM, Ramsey NF, Slagter HA, Kahn RS. Functional anatomical correlates of controlled and automatic processing. Journal of Cognitive Neuroscience 2001;13:730–743
  • Dickerson BC, Salat DH, Greve DN, Chua EF, Rand-Giovannetti E, Rentz DM, Bertram L, Mullin K, Tanzi RE, Blacker D, et al. Increased hippocampal activation in mild cognitive impairment compared to normal aging and AD. Neurology 2005;65:404–411
  • Lenzi D, Serra L, Perri R, Pantano P, Lenzi GL, Paulesu E, Caltagirone C, Bozzali M, Macaluso E. Single domain amnestic mci: A multiple cognitive domains fmri investigation. Neurobiology of Aging 2009;32:1542--1557
  • Bosch B, Bartres-Faz D, Rami L, Arenaza-Urquijo EM, Fernandez-Espejo D, Junque C, Sole-Padulles C, Sanchez-Valle R, Bargallo N, Falcon C, et al. Cognitive reserve modulates task-induced activations and deactivations in healthy elders, amnestic mild cognitive impairment and mild Alzheimer's disease. Cortex: A Journal Devoted to the Study of the Nervous System and Behavior 2010;46:451–461
  • Carroll LJ, Cassidy JD, Holm L, Kraus J, Coronado VG, Injury WHOCCTFoMTB. 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;36(Suppl 43):113–125
  • Ettenhofer ML, Abeles N. The significance of mild traumatic brain injury to cognition and self-reported symptoms in long-term recovery from injury. Journal of Clinical and Experimental Neuropsychology 2009;31:363--372
  • Luoto TM, Tenovuo O, Kataja A, Brander A, Öhman J, Iverson GL. Who gets recruited in mild traumatic brain injury research? Journal of Neurotrauma 2013;30:11–16
  • McCullagh S, Feinstein A. Outcome after mild traumatic brain injury: An examination of recruitment bias. Journal of Neurology, Neurosurgery & Psychiatry 2003;74:39–43
  • Miller E. Head injury and offending. Journal of Forensic Psychiatry 1999;10:157–166
  • Suchy Y, Eastvold A, Whittaker WJ, Strassberg D. Validation of the Behavioral Dyscontrol Scale-Electronic Version: Sensitivity to subtle sequelae of mild traumatic brain injury. Brain Injury 2007;21:69–80
  • Eastvold A, Suchy Y, Strassberg DS. Executive function profiles of pedophilic and nonpedophilic child molesters. Journal of the International Neuropsychological Society 2011;17:295–307
  • Suchy Y, Whittaker JW, Strassberg DS, Eastvold A. Neurocognitive differences between pedophilic and nonpedophilic child molesters. Journal of the International Neuropsychological Society 2009;15:248–257
  • Chapman LJ, Chapman JP. The measurement of handedness. Brain and Cognition 1987;6:175–183
  • Kraybill ML, Suchy Y. Executive functioning, motor programming, and functional independence: Accounting for variance, people, and time. The Clinical Neuropsychologist 2011;25:210–223
  • Kraybill ML, Thorgusen SR, Suchy Y. The Push-Turn-Taptap task outperforms measures of executive functioning in predicting declines in functionality: Evidence-based approach to test validation. The Clinical Neuropsychologist 2013;27:238–255
  • Suchy Y, Kraybill ML. The relationship between motor programming and executive abilities: Constructs measured by the Push-Turn-Taptap task from the BDS-EV. Journal of Clinical and Experimental Neuropsychology 2007;29:648--659
  • Delis D, Kaplan E, Kramer JH. Delis Kaplan Executive Function System, Examiner's Manual. San Antonio, TX: The Psychological Corporation; 2001
  • Wechsler D. Wechsler Adult Intelligence Scale. 3rd ed. San Antonio, TX: The Psychological Corporation; 1997
  • Zachary RA, Paulson MJ, Gorsuch RL. Estimating WAIS IQ from the Shipley Institute of Living Scale using continuously adjusted age norms. Journal of Clinical Psychology 1985;41:820–831
  • Suchy Y, Kraybill M, Larson JGL. Understanding design fluency: Motor and executive contributions. Journal of the International Neuropsychological Society 2010;16:26–37
  • Wright DL, Black CB, Immink MA, Brueckner S, Magnuson C. Long-term motor programming improvements occur via concatenation of movement sequences during random but not during blocked practice. Journal of Motor Behavior 2004;36:39–50
  • Sperling RA, Aisen PS, Beckett LA, Bennett DA, Craft S, Fagan AM, Iwatsubo T, Jack CR Jr, Kaye J, Montine TJ, et al. Toward defining the preclinical stages of Alzheimer’s disease: Recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease. Alzheimer’s & Dementia 2011;7:280–292
  • Weimer DL, Sager MA. Early identification and treatment of Alzheimer's disease: Social and fiscal outcomes. Alzheimer's & Dementia 2009;5:215–226
  • Anderson SW, Aksan N, Dawson JD, Uc EY, Johnson AM, Rizzo M. Neuropsychological assessment of driving safety risk in older adults with and without neurologic disease. Journal of Clinical and Experimental Neuropsychology 2012;34:895–905
  • Bishop CL, Temple RO, Tremont G, Westervelt HJ, Stern RA. Utility of the Neuropsychological Evaluation in an Acute Medical Hospital. The Clinical Neuropsychologist 2003;17:468–473
  • Braun M, Tupper D, Kaufmann P, McCrea M, Postal K, Westerveld M, Wills K, Deer T. Neuropsychological Assessment: A valuable tool in the diagnosis and management of neurological, neurodevelopmental, medical, and psychiatric disorders. Cognitive and Behavioral Neurology 2011;24:107–114
  • Echemendia RJ, Iverson GL, McCrea M, Broshek DK, Gioia GA, Sautter SW, Macciocchi SN, Barr WB. Role of Neuropsychologists in the evaluation and management of sport-related concussion: An inter-organization position statement. The Clinical Neuropsychologist 2011;25:1289–1294
  • Fields J, Ferman T, Boeve B, Smith G. Neuropsychological assessment of patients with dementing illness. Nature reviews. Neurology 2011;7:677–687
  • Jones-Gotman M, Smith ML, Risse GL, Westerveld M, Swanson SJ, Giovagnoli AR, Lee T, Mader-Joaquim MJ, Piazzini A. The contribution of neuropsychology to diagnostic assessment in epilepsy. Epilepsy & Behavior 2010;18:3–12
  • Pillon B. Neuropsychological assessment for management of patients with deep brain stimulation. Movement Disorders 2002;17:S116–S122
  • Stricker NH, Tybur JM, Sadek JR, Haaland KY. Utility of the Neuropsychological Assessment Battery in detecting cognitive impairment after unilateral stroke. Journal of the International Neuropsychological Society 2010;16:813–821

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