Clinical Neurophysiology
Volume 120, Issue 1 , Pages 60-72 , January 2009

ERP correlates of selective attention and working memory capacities in children with ADHD and/or PDD-NOS

  • H. Karin Gomarus

      Affiliations

    • Department of Child and Adolescent Psychiatry, University Medical Center Groningen, University of Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands
    • Corresponding Author InformationCorresponding author. Tel.: +31 50 3681253; fax: +31 50 3681120.
  • ,
  • Albertus A. Wijers

      Affiliations

    • Department of Experimental and Work, Psychology, University of Groningen, The Netherlands
  • ,
  • Ruud B. Minderaa

      Affiliations

    • Department of Child and Adolescent Psychiatry, University Medical Center Groningen, University of Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands
  • ,
  • Monika Althaus

      Affiliations

    • Department of Child and Adolescent Psychiatry, University Medical Center Groningen, University of Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands

,Accepted 6 October 2008.

References 

  1. Achenbach TM, Edelbrock CS. Manual for the child behavior checklist and revised profile. Burlington, Vermont: University of Vermont, Department of Psychiatry; 1983;
  2. Althaus M, De Sonneville LMJ, Minderaa RB, Hensen LGN, Til RB. Information processing and aspects of visual attention in children with the DSM-III-R diagnosis “pervasive developmental disorder not otherwise specified” (PDD-NOS). I: Focused and divided attention. Child Neuropsychol. 1996;2(1):17–29
  3. Althaus M, Mulder LJM, Mulder G, Aarnoudse CC, Minderaa RB. Cardiac adaptivity to attention-demanding tasks in children with a pervasive developmental disorder not otherwise specified (PDD-NOS). Biol Psychiatry. 1999;46(6):799–809
  4. American Electroencephalographic Society. Guideline thirteen: guidelines for standard electrode position nomenclature. J Clin Neurophysiol 1994;11:111–3.
  5. American Psychiatric Association. Diagnostic and statistical manual of mental disorders. Fouth Edition Text Revision (DSM-IV-TRTM). Washington DC: American Psychiatric Association; 2000.
  6. Baddeley A, Hitch GJ. Working Memory. In:  Bower GH editors. The psychology of learning and motivation. New York: Academic Press; 1974;p. 47–89
  7. Banaschewski T, Brandeis D. Annotation: What electrical brain activity tells us about brain function that other techniques cannot tell us – a child psychiatric perspective. J Child Psychol Psychiatry. 2007;48(5):425–435
  8. Barry RJ, Johnstone SJ, Clarke AR. A review of electrophysiology in attention-deficit/hyperactivity disorder. II: Event-related potentials. Clin Neurophysiol. 2003;114(2):184–198
  9. Belmonte MK, Yurgelun-Todd DA. Functional anatomy of impaired selective attention and compensatory processing in autism. Brain Res Cogn Brain Res. 2003;17(3):651–664
  10. Bennetto L, Pennington BF, Rogers SJ. Intact and impaired memory functions in autism. Child Dev. 1996;67(4):1816–1835
  11. Blöte AW, Curfs LMG. Het gebruik van de Conners teacher rating scale in Nederland. Ned Tijdschr Psychol. 1986;41:226–236
  12. Booth JR, Burman DD, Meyer JR, Zhang L, Trommer BL, Davenport ND, et al. Larger deficits in brain networks for response inhibition than for visual selective attention in attention deficit hyperactivity disorder (ADHD). J Child Psychol Psychiatry Allied Disciplines. 2005;46(1):94–111
  13. Brodeur A, Pond M. The development of selective attention in children with attention deficit hyperactivity disorder. J Abnorm Child Psychol. 2001;29(3):229
  14. Burack JA. Selective attention deficits in persons with autism: preliminary evidence of an inefficient attentional lens. J Abnorm Psychol. 1994;103:535–543
  15. Carter CS, Krener P, Chaderjian M, Northcutt C, Wolfe V. Abnormal processing of irrelevant information in attention deficit hyperactivity disorder. Psychiatry Res. 1995;56(1):59–70
  16. Ciesielski KT, Courchesne E, Elmasian R. Effects of focused selective attention tasks on event-related potentials in autistic and normal individuals. Electroencephalogr Clin Neurophysiol. 1990;75(3):207–220
  17. Ciesielski KT, Knight JE, Prince RJ, Harris RJ, Handmaker SD. Event-related potentials in cross-modal divided attention in autism. Neuropsychologia. 1995;33(2):225–246
  18. Clark T, Feehan C, Tinline C, Vostanis P. Autistic symptoms in children with attention deficit-hyperactivity disorder. Eur Child Adolesc Psychiatry. 1999;8(1):50–55
  19. Conners CK. A teacher rating scale for use in drug studies with children. Am J Psychiatry. 1967;126:152–156
  20. Conners, CK, Rating scales for use in drug studies with children. Psychopharmacol Bull 1973;9:24–84.
  21. Courchesne E, Lincoln AJ, Kilman BA, Galambos R. Event-related brain potential correlates of the processing of novel visual and auditory information in autism. J Autism Dev Disord. 1985;15(1):55–76
  22. Courchesne E, Lincoln AJ, Yeung-Courchesne R, Elmasian R, Grillon C. Pathophysiologic findings in nonretarded autism and receptive developmental language disorder. J Autism Dev Disord. 1989;19(1):1–17
  23. Diamond A. Attention-deficit disorder (attention-deficit/hyperactivity disorder without hyperactivity): a neurobiologic ally and behaviorally distinct disorder from attention-deficit/hyperactivity disorder (with hyperactivity). Dev Psychopathol. 2005;17(3):807–825
  24. Frazier JA, Biederman J, Bellordre CA, Garfield SB, Geller DA, Coffey BJ, et al. Should the diagnosis of attention-deficit/hyperactivity disorder be considered in children with pervasive developmental disorder?. J Attention Disord. 2001;4(4):203–211
  25. Geurts HM, Verte S, Oosterlaan J, Roeyers H, Sergeant JA. How specific are executive functioning deficits in attention deficit hyperactivity disorder and autism?. J Child Psychol Psychiatry. 2004;45(4):836–854
  26. Goldberg MC, Mostofsky SH, Cutting LE, Mahone EM, Astor BC, Denckla MB, et al. Subtle executive impairment in children with autism and children with ADHD. J Autism Dev Disord. 2005;35(3):279–293
  27. Goldstein G, Johnson CR, Minshew NJ. Attentional processes in autism. J Autism Dev Disord. 2001;31(4):433–440
  28. Gomarus HK, Althaus M, Wijers AA, Minderaa RB. The effects of memory load and stimulus relevance on the EEG during a visual selective memory search task – an ERP and ERD/ERS study. Clin Neurophysiol. 2006;117(4):871–884
  29. Gratton G, Coles MG, Donchin E. A new method for off-line removal of ocular artifacts. Electroencephalogr Clin Neurophysiol. 1983;55:468–484
  30. Happé F, Booth R, Charlton R, Hughes C. Executive function deficits in autism spectrum disorders and attention-deficit/hyperactivity disorder: examining profiles across domains and ages. Brain Cogn. 2006;61(1):25–39
  31. Harter MR, Aine CJ. Brain mechanisms of visual selective attention. In:  Parasuraman R,  Davies DR editor. Varieties of attention. New York: Academic Press; 1984;p. 293–321
  32. Hartman CA, Luteijn E, Serra M, Minderaa R. Refinement of the children’s social behavior questionnaire (CSBQ): an instrument that describes the diverse problems seen in milder forms of PDD. J Autism Dev Disord. 2006;36(3):325–342
  33. Hillyard SA, Anllo-Vento L. Event-related brain potentials in the study of visual selective attention. Proc Natl Acad Sci USA. 1998;781–787
  34. Hillyard SA, Picton TW. Event-related brain potentials and selective information processing in man. In: Progress in clinical neurophysiology. Cognitive components in cerebral event-related potentials and selective attention. vol. 6:Basel, Switzerland: Karger; 1979;p. 1–52
  35. Hoeksma MR, Kemner C, Verbaten M, Van Engeland H. Processing capacity in children and adolescents with pervasive developmental disorders. J Autism Dev Disord. 2004;34(3):341–354
  36. Huang-Pollock CL, Nigg JT, Carr TH. Deficient attention is hard to find: applying the perceptual load model of selective attention to attention deficit hyperactivity disorder subtypes. J Child Psychol Psychiatry Allied Disciplines. 2005;46(11):1211–1218
  37. Jensen VK, Larrieu JA, Mack KK. Differential diagnosis between attention-deficit/hyperactivity disorder and pervasive developmental disorder-not otherwise specified. Clin Pediatr (Phila). 1997;36(10):555–561
  38. Jonkman LM, Kemner C, Verbaten MN, Van Engeland H, Camfferman G, Buitelaar JK, et al. Attentional capacity, a probe ERP study: differences between children with attention-deficit hyperactivity disorder and normal control children and effects of methylphenidate. Psychophysiology. 2000;37(3):334–346
  39. Jonkman LM, Kenemans JL, Kemner C, Verbaten MN, Van Engeland H. Dipole source localization of event-related brain activity indicative of an early visual selective attention deficit in ADHD children. Clin Neurophysiol. 2004;115(7):1537–1549
  40. Jonkman LM, Kemner C, Verbaten MN, Koelega HS, Camfferman G, Van der Gaag RJ, et al. Effects of methylphenidate on event-related potentials and performance of attention-deficit hyperactivity disorder children in auditory and visual selective attention tasks. Biol Psychiatry. 1997;41(6):690–702
  41. Jonkman LM, Kemner C, Verbaten MN, Koelega HS, Camfferman G, Van der Gaag RJ, et al. Event-related potentials and performance of attention-deficit hyperactivity disorder: Children and normal controls in auditory and visual selective attention tasks. Biol Psychiatry. 1997;41(5):595–611
  42. Karatekin C, Asarnow RF. Components of visual search in childhood-onset schizophrenia and attention-deficit/hyperactivity disorder. J Abnorm Child Psychol. 1998;26(5):367–380
  43. Karatekin C. A test of the integrity of the components of Baddeley’s model of working memory in attention-deficit/hyperactivity disorder (ADHD). J Child Psychol Psychiatry. 2004;45(5):912–926
  44. Kemner C, Verbaten MN, Cuperus JM, Camfferman G, Van Engeland H. Visual and somatosensory event-related brain potentials in autistic children and three different control groups. Electroencephalogr Clin Neurophysiol. 1994;92(3):225–237
  45. Kemner C, Van der Gaag RJ, Verbaten M, van Engeland H. ERP differences among subtypes of pervasive developmental disorders. Biol Psychiatry. 1999;46(6):781–789
  46. Klimkeit EI, Mattingley JB, Sheppard DM, Lee P, Bradshaw JL. Motor preparation, motor execution, attention, and executive functions in attention deficit/hyperactivity disorder (ADHD). Child Neuropsychol. 2005;11(2):153–173
  47. Kok A. On the utility of P3 amplitude as a measure of processing capacity. Psychophysiology. 2001;38(3):557–577
  48. Koshino H, Carpenter PA, Minshew NJ, Cherkassky VL, Keller TA, Just MA. Functional connectivity in an fMRI working memory task in high-functioning autism. NeuroImage. 2005;24(3):810–821
  49. Lahey BB, Schaughency EA, Hynd GW, Carlson CL, Nieves N. Attention-deficit disorder with and without hyperactivity – comparison of behavioral-characteristics of clinic-referred children. J Am Acad Child Adolesc Psychiatry. 1987;26(5):718–723
  50. Losier BJ, McGrath PJ, Klein RM. Error patterns on the continuous performance test in non-medicated and medicated samples of children with and without ADHD: a meta-analytic review. J Child Psychol Psychiatry. 1996;37(8):971–987
  51. Lovaas OI, Koegel RL, Schreibman L. Stimulus overselectivity in autism: a review of research. Psychol Bull. 1979;86:1236–1254
  52. Lovaas OI, Schreibman L. Stimulus overselectivity of autistic children in a two stimulus situation. Behav Res Therapy. 1971;9:305–310
  53. Luteijn E, Minderaa RB, Jackson S. Vragenlijst voor de inventarisatie van sociaal gedrag bij kinderen, Handleiding [Children’s Social Behavior Questionnaire, Manual]. Lisse, the Netherlands: Swets & Zeitlinger; 2002.
  54. Martinussen R, Hayden J, Hogg-Johnson S, Tannock R. A meta-analysis of working memory impairments in children with attention-deficit/hyperactivity disorder. J Am Acad Child Adolesc Psychiatry. 2005;44(4):377–384
  55. Minshew NJ, Luna B, Sweeney JA. Oculomotor evidence for neocortical systems but not cerebellar dysfunction in autism. Neurology. 1999;52(5):917–922
  56. Mulder G, Gloerich ABM, Brookhuis KA, Van Dellen HJ, Mulder LJ. Stage analysis of the reaction process using brain-evoked potentials and reaction time. Psychol Res. 1984;46:15–32
  57. Nigg JT, Blaskey LG, Huang-Pollock CL, Rappley MD. Neuropsychological executive functions and DSM-IV ADHD subtypes. J Am Acad Child Adolesc Psychiatry. 2002;41(1):59–66
  58. Okita T, Wijers AA, Mulder G, Mulder LJM. Memory search and visual spatial attention: an event-related brain potential analysis. Acta Psychol. 1985;60:263–292
  59. Ozonoff S, Jensen J. Brief report: specific executive function profiles in three neurodevelopmental disorders. J Autism Dev Disord. 1999;29(2):171–177
  60. Ozonoff S, Pennington BF, Rogers SJ. Executive function deficits in high-functioning autistic individuals: relationship to theory of mind. J Child Psychol Psychiatry. 1991;32(7):1081–1105
  61. Ozonoff S, Strayer DL. Further evidence of intact working memory in autism. J Autism Dev Disord. 2001;31(3):257–263
  62. Pascualvaca DM, Fantie BD, Papageorgiou M, Mirsky AF. Attentional capacities in children with autism: is there a general deficit in shifting focus?. J Autism Dev Disord. 1998;28(6):467–478
  63. Pennington BF, Ozonoff S. Executive functions and developmental psychopathology. J Child Psychol Psychiatry Allied Disciplines. 1996;37(1):51–87
  64. Ruchkin DS, Johnson R, Canoune H, Ritter W. Short-term memory storage and retention: an event-related brain potential study. Electroencephalogr Clin Neurophysiol. 1990;76(5):419–439
  65. Ruchkin DS, Johnson R, Grafman J, Canoune H, Ritter W. Distinctions and similarities among working memory processes: an event-related potential study. Brain Res Cogn Brain Res. 1992;1(1):53–66
  66. Russell J, Jarrold C, Henry L. Working memory in children with autism and with moderate learning difficulties. J Child Psychol Psychiatry. 1996;37(6):673–686
  67. Sanders AF. Towards a model of stress and human performance. Acta Psychol. 1983;53:61–97
  68. Santosh PJ, Mijovic A. Social impairment in hyperkinetic disorder – relationship to psychopathology and environmental stressors. Eur Child Adolesc Psychiatry. 2004;13(3):141–150
  69. Satterfield JH, Schell AM, Nicolas T. Preferential neural processing of attended stimuli in attention-deficit hyperactivity disorder and normal boys. Psychophysiology. 1994;31(1):1–10
  70. Sawaki R, Katayama J. Severity of AD/HD symptoms and efficiency of attentional resource allocation. Neurosci Lett. 2006;407:86–90
  71. Schneider W, Shiffrin RM. Controlled and automatic human information processing. I: Detection, search, and attention. Psychol Rev. 1977;84:1–66
  72. Scholte EM, Ploeg vdJD. Handleiding ADHD Vragenlijst (AVL). Lisse: Swets & Zeitlinger; 1998;
  73. Sergeant J, Scholten CA. On resource strategy limitations in hyperactivity: cognitive impulsivity reconsidered. J Child Psychol Psychiatry. 1985;26:97–109
  74. Shiffrin RM, Schneider W. Controlled and automatic information processing: perceptual learning, automatic attending, and a general theory. Psychol Rev. 1977;84:127–190
  75. Smid HG, Jakob A, Heinze HJ. An event-related brain potential study of visual selective attention to conjunctions of color and shape. Psychophysiology. 1999;36(2):264–279
  76. Taylor MJ, Sunohara GA, Khan SC, Malone MA. Parallel and serial attentional processes in ADHD: ERP evidence. Dev Neuropsychol. 1997;13(4):531–539
  77. Townsend J, Westerfield M, Leaver E, Makeig S, Jung TP, Pierce K, et al. Event-related brain response abnormalities in autism: evidence for impaired cerebello-frontal spatial attention networks. Brain Res Cogn Brain Res. 2001;11(1):127–145
  78. Van der Stelt O, Kok A, Smulders FT, Snel J, Gunning BW. Cerebral event-related potentials associated with selective attention to color: developmental changes from childhood to adulthood. Psychophysiology. 1998;35(3):227–239
  79. Van der Stelt O, Van der Molen MW, Gunning BW, Kok A. Neuroelectrical signs of selective attention to color in boys with attention-deficit hyperactivity disorder. Brain Res Cogn Brain Res. 2001;12(2):245–264
  80. Van Haasen PP, De Bruyn EEJ, Pijl YL, Poortinga YH, Lutje Spelberg HC, Van der Steene G, et al. Wechsler intelligence scale for children – revised. Dutch ed.. Lisse, The Netherlands: Swets & Zeitlinger; 1986;
  81. Verbaten MN, Van Engeland H, Kenemans JK, Slangen JL. Abnormal visual event-related potentials of autistic-children. J Autism Dev Disord. 1991;21(4):449–470
  82. Verhulst FC, Koot JM, Akkerhuis GW, Veerman JW. Praktische Handleiding voor de CBCL (child behavior checklist). Assen: Van Gorcum; 1990;
  83. Weber DL, Clark CR, McFarlane AC, Moores KA, Morris P, Egan GF. Abnormal frontal and parietal activity during working memory updating in post-traumatic stress disorder. Psychiatry Res Neuroimaging. 2005;140(1):27–44
  84. Wechsler D. Wechsler intelligence scale for children revised. New York: The Psychological Corporation; 1974;
  85. Wijers AA. Visual selective attention. An electrophysiological approach. The Netherlands: University of Groningen; 1989;
  86. Wijers AA, Mulder G, Gunter TC, Smid HGOM. Brain potential analysis of selective attention. In:  Neumann OE,  Sanders AE editor. Handbook of perception and action. Attention. vol. 4:London: Academic Press; 1996;p. 333–387
  87. Wijers AA, Mulder G, Okita T, Mulder LJ. Event-related potentials during memory search and selective attention to letter size and conjunctions of letter size and color. Psychophysiology. 1989;26(5):529–547
  88. Wijers AA, Mulder G, Okita T, Mulder LJ, Scheffers MK. Attention to color: an analysis of selection, controlled search, and motor activation, using event-related potentials. Psychophysiology. 1989;26(1):89–109
  89. Willcutt EG, Doyle AE, Nigg JT, Faraone SV, Pennington BF. Validity of the executive function theory of attention-deficit/hyperactivity disorder: a meta-analytic review. Biol Psychiatry. 2005;57(11):1336–1346

PII: S1388-2457(08)01025-0

doi: 10.1016/j.clinph.2008.10.018

Clinical Neurophysiology
Volume 120, Issue 1 , Pages 60-72 , January 2009