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Original Articles

The effects of concussion on rapid picture naming in children

ORCID Icon, , &
Pages 506-514 | Received 05 Mar 2017, Accepted 15 Jan 2018, Published online: 01 Feb 2018

References

  • Gilchrist J, Thomas K, Xu L, McGuire L, Coronado V. Nonfatal sports and recreation related traumatic brain injuries among children and adolescents treated in emergency departments in the United States, 2001-2009. Morbidity and Mortality Weekly Report. 2011; 60(39): 1337–42.
  • Faul M, Xu L, Wald MM, Coronado V. Traumatic Brain Injury in the United States. Atlanta, GA: Centers for Disease Control and Prevention, National Center for Injury Prevention and Control; 2010.
  • Elman JL, Bates EA, Johnson MH, Karmiloff-Smith A, Parisi D, Plunkett K. Rethinking innateness: A connectionist perspective on development. Cambridge, MA: MIT Press; 1998.
  • Lloyd J, Wilson ML, Tenovuo O, Saarijärvi S. Outcomes from mild and moderate traumatic brain injuries among children and adolescents: A systematic review of studies from 2008–2013. Brain Injury. 2015; 29(5): 539–49.
  • Ponsford J, Willmott C, Rothwell A, Cameron P, Ayton G, Nelms R, Curran C, Ng K. Cognitive and behavioral outcome following mild traumatic head injury in children. The Journal of Head Trauma Rehabilitation. 1999; 14(4): 360–72.
  • Ponsford J, Willmott C, Rothwell A, Cameron P, Ayton G, Nelms R, Curran C, Ng K. Impact of early intervention on outcome after mild traumatic brain injury in children. Pediatrics. 2001; 108(6): 1297–303.
  • Beauchamp MH, Anderson V. SOCIAL: an integrative framework for the development of social skills. Psychological Bulletin. 2010; 136(1): 39.
  • McCrory P. Sports concussion and the risk of chronic neurological impairment. Clinical Journal of Sport Medicine. 2011; 21(1): 6–12.
  • Borgaro SR, Prigatano GP, Kwasnica C, Rexer JL. Cognitive and affective sequelae in complicated and uncomplicated mild traumatic brain injury. Brain Injury. 2003; 17(3): 189–98.
  • Cicerone KD. Attention deficits and dual task demands after mild traumatic brain injury. Brain Injury. 1996; 10(2): 79–90. doi: 10.1080/026990596124566.
  • Moore EL, Terryberry-Spohr L, Hope DA. Mild traumatic brain injury and anxiety sequelae: a review of the literature. Brain Injury. 2006; 20(2): 117–32. doi: 10.1080/02699050500443558.
  • Rogers JM, Fox AM, Donnelly J. Impaired practice effects following mild traumatic brain injury: an event-related potential investigation. Brain Injury. 2015; 29(3): 343–51.
  • McCrory P, Meeuwisse WH, Aubry M, Cantu B, Dvořák J, Echemendia RJ, Engebretsen L, Johnston K, Kutcher JS, Raftery M. Consensus statement on concussion in sport: the 4th International Conference on Concussion in Sport held in Zurich, November 2012. British Journal of Sports Medicine. 2013; 47(5): 250–58.
  • Giza CC, Hovda DA. The new neurometabolic cascade of concussion. Neurosurgery. 2014; 75(4): S24–33.
  • Talavage TM, Nauman EA, Breedlove EL, Yoruk U, Dye AE, Morigaki KE, Feuer H, Leverenz LJ. Functionally-detected cognitive impairment in high school football players without clinically-diagnosed concussion. Journal of Neurotrauma. 2014; 31(4): 327–38.
  • Kristman VL, Borg J, Godbolt AK, Salmi LR, Cancelliere C, Carroll LJ, Holm LW, Nygren-De Boussard C, Hartvigsen J, Abara U. Methodological issues and research recommendations for prognosis after mild traumatic brain injury: results of the International Collaboration on Mild Traumatic Brain Injury Prognosis. Archives of Physical Medicine and Rehabilitation. 2014; 95(3): S265–277.
  • Ganguly K, Poo MM. Activity-dependent neural plasticity from bench to bedside. Neuron. 2013; 80(3): 729–41.
  • Kolb B, Pellis S, Robinson TE. Plasticity and functions of the orbital frontal cortex. Brain and Cognition. 2004; 55(1): 104–15.
  • Stein DG, Hoffman SW. Concepts of CNS plasticity in the context of brain damage and repair. The Journal of Head Trauma Rehabilitation. 2003; 18(4): 317–41.
  • Aram DM, Eisele JA. Intellectual stability in children with unilateral brain lesions. Neuropsychologia. 1994; 32(1): 85–95.
  • Babikian T, Asarnow R. Neurocognitive outcomes and recovery after pediatric TBI: meta-analytic review of the literature. Neuropsychology. 2009; 23(3): 283.
  • Catale C, Marique P, Closset A, Meulemans T. Attentional and executive functioning following mild traumatic brain injury in children using the Test for Attentional Performance (TAP) battery. Journal of Clinical and Experimental Neuropsychology. 2009; 31(3): 331–38.
  • Ewing-Cobbs L, Fletcher JM, Levin HS, Francis DJ, Davidson K, Miner ME. Longitudinal neuropsychological outcome in infants and preschoolers with traumatic brain injury. Journal of the International Neuropsychological Society. 1997; 3(6): 581–91.
  • Fay TB, Yeates KO, Taylor HG, Bangert B, Dietrich A, Nuss KE, Rusin J, Wright M. Cognitive reserve as a moderator of postconcussive symptoms in children with complicated and uncomplicated mild traumatic brain injury. Journal of the International Neuropsychological Society. 2010; 16(1): 94–105.
  • Schatz P, Pardini JE, Lovell MR, Collins MW, Podell K. Sensitivity and specificity of the ImPACT Test Battery for concussion in athletes. Archives of Clinical Neuropsychology. 2006; 21(1): 91–99.
  • Gioia GA, Collins M, Isquith PK. Improving identification and diagnosis of mild traumatic brain injury with evidence: psychometric support for the acute concussion evaluation. The Journal of Head Trauma Rehabilitation. 2008; 23(4): 230–42.
  • McCrea M, Iverson GL, McAllister TW, Hammeke TA, Powell MR, Barr WB, Kelly JP. An integrated review of recovery after mild traumatic brain injury (MTBI): implications for clinical management. The Clinical Neuropsychologist. 2009; 23(8): 1368–90.
  • Asarnow RF, Satz P, Light R, Zaucha K, Lewis R, McCleary C. The UCLA study of mild closed head injury in children and adolescents. Broman S, Michel ME. editors. Traumatic Head Injury in Children and Adolescents. New York: Oxford University Press; 1995. p 117–146.
  • Carroll LJ, Cassidy JD, Peloso PM, Borg J, Von Holst H, Holm L, Paniak C, Pepin M. W.H.O. Collaborating Centre Task Force on Mild Traumatic Brain Injury. Prognosis for mild traumatic brain injury: results of the WHO Collaborating Centre Task Force on Mild Traumatic Brain Injury. Journal of Rehabilitation Medicine. 2004; 36(43 Suppl): 84–105.
  • Barr WB, Prichep LS, Chabot R, Powell MR, McCrea M. Measuring brain electrical activity to track recovery from sport-related concussion. Brain Injury. 2012; 26(1): 58–66.
  • Belanger HG, Vanderploeg RD. The neuropsychological impact of sports-related concussion: a meta-analysis. Journal of the International Neuropsychological Society. 2005; 11(4): 345–57.
  • Ylvisaker M. Language and communication disorders following pediatric head injury. The Journal of Head Trauma Rehabilitation. 1986; 1(4): 48–56.
  • King KA, Hough MS, Walker MM, Rastatter M, Holbert D. Mild traumatic brain injury: effects on naming in word retrieval and discourse. Brain Injury. 2006; 20(7): 725–32.
  • Asarnow RF, Satz P, Light R, Lewis R, Neumann E. Behavior problems and adaptive functioning in children with mild and severe closed head injury. Journal of Pediatric Psychology. 1991; 16(5): 543–55.
  • Boll TJ. Minor head injury in children—out of sight but not out of mind. Journal of Clinical Child & Adolescent Psychology. 1983; 12(1): 74–80.
  • Moore RD, Pindus DM, Drolette ES, Scudder MR, Raine LB, Hillman CH. The persistent influence of pediatric concussion on attention and cognitive control during flanker performance. Biological Psychology. 2015; 109: 93–102.
  • Shaffer D, Bijur P, Oliver F, Rutter ML. Head injury and later reading disability. Journal of the American Academy of Child Psychiatry. 1980; 19(4): 592–610.
  • Ewing-Cobbs L, Barnes MA. Linguistic outcomes following traumatic brain injury in children. Seminars in Pediatric Neurology. 2002; 9(3): 209–17.
  • Wrightson P, McGinn V, Gronwall D. Mild head injury in preschool children: evidence that it can be associated with a persisting cognitive defect. Journal of Neurology, Neurosurgery & Psychiatry. 1995; 59(4): 375–80.
  • Barnes MA, Dennis M, Wilkinson M. Reading after closed head injury in childhood: effects on accuracy, fluency, and comprehension. Developmental Neuropsychology. 1999; 15(1): 1–24.
  • Ewing-Cobbs L, Levin HS, Eisenberg HM, Fletcher JM. Language functions following closed-head injury in children and adolescents. Journal of Clinical and Experimental Neuropsychology. 1987; 9(5): 575–92.
  • Marian V, Blumenfeld HK, Kaushanskaya M. The Language Experience and Proficiency Questionnaire (LEAP-Q): assessing language profiles in bilinguals and multilinguals. Journal of Speech, Language, and Hearing Research. 2007; 50(4): 940–67.
  • Rossion B, Pourtois G. Revisiting snodgrass and Vanderwart’s object pictorial set: the role of surface detail in basic-level object recognition. Perception. 2004; 33(2): 217–36.
  • Luce PA, Pisoni DB. Recognizing spoken words: The Neighborhood Activation Model. Ear & Hearing. 1998; 19(1): 1–36.
  • Nusbaum HC, Pisoni DB, Davis CK. Sizing up the Hoosier Mental Lexicon: measuring the familiarity of 20,000 words. Research on Speech Perception: Progress Report. 1984; 10: 357–76.
  • Oldfield RC, Wingfield A. Response latencies in naming objects. Quarterly Journal of Experimental Psychology. 1965; 17(4): 273–81.
  • German DJ, Newman RS. The impact of lexical factors on children’s word-finding errors. Journal of Speech, Language, and Hearing Research. 2004; 47(3): 624–36.
  • Newman RS, German DJ. Effects of lexical factors on lexical access among typical language-learning children and children with word-finding difficulties. Language and Speech. 2002; 45(3): 285–317.
  • Newman RS, German DJ, Jagielko JR. Influence of lexical factors on word-finding accuracy, error patterns, and substitution types. Communication Disorders Quarterly. 2017; 39(2): 356–66.
  • Ratner NB, Newman R, Strekas A. Effects of word frequency and phonological neighborhood characteristics on confrontation naming in children who stutter and normally fluent peers. Journal of Fluency Disorders. 2009; 34(4): 225–41.
  • Jusczyk PW, Luce PA, Charles-Luce J. Infants’ sensitivity to phonotactic patterns in the native language. Journal of Memory and Language. 1994; 33(5): 630.
  • Vitevitch MS, Luce PA. A web-based interface to calculate phonotactic probability for words and nonwords in English. Behavior Research Methods, Instruments, & Computers. 2004; 36(3): 481–87.
  • Vitevitch MS. Influence of onset density on spoken-word recognition. Journal of Experimental Psychology: Human Perception and Performance. 2002; 28(2): 270.
  • Cochran W, Cox G. Experimental designs. New York: John Wiley and Sons Inc.; 1957.
  • Satterthwaite FE. An approximate distribution of estimates of variance components. Biometrics Bulletin. 1946; 2(6): 110–14.
  • Storkel HL. Methods for minimizing the confounding effects of word length in the analysis of phonotactic probability and neighborhood density. Journal of Speech, Language, and Hearing Research. 2004; 47(6): 1454–68.
  • Forsythe A, Street N, Helmy M. Revisiting Rossion and Pourtois with new ratings for automated complexity, familiarity, beauty, and encounter. Behavior Research Methods. 2017; 49(4): 1484–93.
  • Barrow IM, Hough M, Rastatter MP, Walker M, Holbert D, Rotondo MF. Can within-category naming identify subtle cognitive deficits in the mild traumatic brain-injured patient?. Journal of Trauma and Acute Care Surgery. 2003; 54(5): 888–97.
  • Barrow IM, Hough M, Rastatter MP, Walker M, Holbert D, Rotondo MF. The effects of mild traumatic brain injury on confrontation naming in adults. Brain Injury. 2006; 20(8): 845–55.
  • Chapman SB, Culhane KA, Levin HS, Harward H, Mendelsohn D, Ewing-Cobbs L, Fletcher JM, Bruce D. Narrative discourse after closed head injury in children and adolescents. Brain and Language. 1992; 43(1): 42–65.
  • McKinlay A. Controversies and outcomes associated with mild traumatic brain injury in childhood and adolescences. Child: Care, Health and Development. 2010; 36(1): 3–21.
  • Hough MS. Word retrieval failure episodes after traumatic brain injury. Aphasiology. 2008; 22(6): 644–54.
  • Fratantoni JM, DeLaRosa BL, Didehbani N, Hart J, Kraut MA. Electrophysiological correlates of word retrieval in traumatic brain injury. Journal of Neurotrauma. 2017; 34(5): 1017–21.
  • Eisenberg MA, Andrea J, Meehan W, Mannix R. Time interval between concussions and symptom duration. Pediatrics. 2013; 132(1): 8–17.
  • Brown NJ, Mannix RC, O’Brien MJ, Gostine D, Collins MW, Meehan WP. Effect of cognitive activity level on duration of post-concussion symptoms. Pediatrics. 2014; 133(2): e299–e304.
  • McCrory P, Ariens M, Berkovic SF. The nature and duration of acute concussive symptoms in Australian football. Clinical Journal of Sport Medicine. 2000; 10(4): 235–38.
  • d’Hemecourt P. Subacute symptoms of sports-related concussion: outpatient management and return to play. Clinics in Sports Medicine. 2011; 30(1): 63–72.
  • Doolan AW, Day DD, Maerlender AC, Goforth M, Brolinson PG. A review of return to play issues and sports-related concussion. Annals of Biomedical Engineering. 2012; 40(1): 106–13.
  • Slobounov S, Slobounov E, Sebastianelli W, Cao C, Newell K. Differential rate of recovery in athletes after first and second concussion episodes. Neurosurgery. 2007; 61(2): 338–44.
  • Valovich McLeod TC, Perrin DH, Guskiewicz KM, Shultz SJ, Diamond R, Gansneder BM. Serial administration of clinical concussion assessments and learning effects in healthy young athletes. Clinical Journal of Sport Medicine. 2004; 14(5): 287–95.
  • McGrath N, Dinn WM, Collins MW, Lovell MR, Elbin R, Kontos AP. Post-exertion neurocognitive test failure among student-athletes following concussion. Brain Injury. 2013; 27(1): 103–13.
  • Eisenberg MA, Meehan WP, Mannix R. Duration and course of post-concussive symptoms. Pediatrics. 2014; 133(6): 999–1006.
  • Carson JD, Lawrence DW, Kraft SA, Garel A, Snow CL, Chatterjee A, Libfeld P, MacKenzie HM, Thornton JS, Moineddin R. Premature return to play and return to learn after a sport-related concussion, Physician’s chart review. Canadian Family Physician. 2014; 60(6): e310–e315.
  • Henry LC, Elbin R, Collins MW, Marchetti G, Kontos AP. Examining recovery trajectories after sport-related concussion with a multimodal clinical assessment approach. Neurosurgery. 2016; 78(2): 232–41.
  • Slobounov S, Gay M, Zhang K, Johnson B, Pennell D, Sebastianelli W, Horovitz S, Hallett M. Alteration of brain functional network at rest and in response to YMCA physical stress test in concussed athletes: rsFMRI study. Neuroimage. 2011; 55(4): 1716–27.
  • Johnson B, Zhang K, Gay M, Horovitz S, Hallett M, Sebastianelli W, Slobounov S. Alteration of brain default network in subacute phase of injury in concussed individuals: resting-state fMRI study. Neuroimage. 2012; 59(1): 511–18.
  • Zhang K, Johnson B, Pennell D, Ray W, Sebastianelli W, Slobounov S. Are functional deficits in concussed individuals consistent with white matter structural alterations: combined FMRI & DTI study. Experimental Brain Research. 2010; 204(1): 57–70.
  • Vagnozzi R, Signoretti S, Cristofori L, Alessandrini F, Floris R, Isgrò E, Ria A, Marziale S, Zoccatelli G, Tavazzi B. 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(11): 3232–42.
  • Vagnozzi R, Signoretti S, Tavazzi B, Cimatti M, Amorini AM, Donzelli S, Delfini R, Lazzarino G. Hypothesis of the postconcussive vulnerable brain: experimental evidence of its metabolic occurrence. Neurosurgery. 2005; 57(1): 164–71.
  • Vagnozzi R, Signoretti S, Tavazzi B, Floris R, Ludovici A, Marziali S, Tarascio G, Amorini AM, Di Pietro V, Delfini R. Temporal window of metabolic brain vulnerability to concussion: a pilot 1h‐magnetic resonance spectroscopic study in concussed athletes—Part iii. Neurosurgery. 2008; 62(6): 1286–96.
  • Gottfried MA. Evaluating the relationship between student attendance and achievement in urban elementary and middle schools, An instrumental variables approach. American Educational Research Journal. 2010; 47(2): 434–65.
  • Allensworth EM, Easton JQ. The on-track indicator as a predictor of high school graduation. Chicago, IL: Consortium on Chicago School Research, University of Chicago; 2005. https://consortium.uchicago.edu/publications/track-indicator-predictor-high-school-graduation
  • Kieffer MJ, Marinell WH, Neugebauer SR. Navigating into, through, and beyond the middle grades: the role of middle grades attendance in staying on track for high school graduation. Journal of School Psychology. 2014; 52(6): 549–65.
  • Sady MD, Vaughan CG, Gioia GA. School and the concussed youth: recommendations for concussion education and management. Physical Medicine and Rehabilitation Clinics of North America. 2011; 22(4): 701–19.
  • Howell D, Osternig L, Van Donkelaar P, Mayr U, Chou L-S. Effects of concussion on attention and executive function in adolescents. Medicine And Science in Sports and Exercise. 2013; 45(6): 1030–37.

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