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ORIGINAL ARTICLE

P3a Amplitude Predicts Successful Treatment Program Completion in Substance-Dependent Individuals

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Pages 669-677 | Published online: 01 Nov 2010

REFERENCES

  • Barratt, E. S., Stanford, M. S., Kent, T. A., & Felthous, A. (1997). Neuropsychological and cognitive psychophysiological substrates of impulsive aggression. Biological Psychiatry, 41(10), 1045–1061.
  • Bauer, L. O. (1997). Frontal P300 decrements, childhood conduct disorder, family history, and the prediction of relapse among abstinent cocaine users. Drug and Alcohol Dependence, 44, 1–10.
  • Bauer, L. O. (2001). Predicting relapse to alcohol and drug abuse via quantitative electroencephalography. Neuropsychopharmacology, 25, 332–340.
  • Bauer, L. O., & Hesselbrock, V. M. (2003). Brain maturation and subtypes of conduct disorder: Interactive effects on P300 amplitude and topography in male adolescents. Journal of the American Academy of Child and Adolescent Psychiatry, 42, 106–115.
  • Bauer, L. O., O’Connor, S., & Hesselbrock, V. M. (1994). Frontal P300 decrements in antisocial personality disorder. Alcoholism: Clinical and Experimental Research, 18, 1300–1305.
  • Bernat, E. M., Hall, J. R., Steffen, B. V., & Patrick, C. J. (2007). Violent offending predicts P300 amplitude. International Journal of Psychophysiology, 66, 161–167.
  • Biggins, C. A., MacKay, S., Clark, W., & Fein, G. (1997) Event related potential evidence for frontal cortex effects of chronic cocaine dependence. Biological Psychiatry, 42, 472–485.
  • Boes, A. D., Bechara, A., Tranel, D., Anderson, S. W., Richman, L., & Nopoulos, P. (2009). Right ventromedial prefrontal cortex: A neuroanatomical correlate of impulse control in boys. Social Cognitive and Affective Neuroscience, 4, 1–9.
  • Carlson, S. R., & Iacono, W. G. (2008). Deviant P300 amplitude development in males is associated with paternal externalizing psychopathology. Journal of Abnormal Psychology, 117, 910–923.
  • Cohen, H. L., Wang, W., Porjesz, B., & Begleiter, H. (1995). Auditory P300 in young alcoholics: Regional response characteristics. Alcoholism: Clinical and Experimental Research, 19, 469–475.
  • Costa, L., Bauer, L., Kuperman, S., Porjesz, B., O’Connor, S., Hesselbrock, V., (2000). Frontal P300 decrements: Alcohol dependence, and antisocial personality disorder. Biological Psychiatry, 47(12), 1064–1071.
  • Crits-Christoph, P., & Siqueland, L. (1996). Psychosocial treatment for drug abuse: Selected review and recommendations for national health care. Archives of General Psychiatry, 53, 749–756.
  • De Bellis, M. D., Narasimhan, A., Thatcher, D. L., Keshavan, M. S., Soloff, P., & Clark, D. B. (2005). Prefrontal cortex, thalamus, and cerebellar volumes in adolescents and young adults with adolescent-onset alcohol use disorders and comorbid mental disorders. Alcoholism: Clinical and Experimental Research, 29, 1590–1600.
  • Dolan, S. L., Bechara, A., & Nathan, P. E. (2008). Executive dysfunction as a risk marker for substance abuse: The role of impulsive personality. Behavioral Sciences & the Law, 26, 799–822.
  • Donchin, E., & Coles, M. G. H. (1988). Is the P300 component a manifestation of context updating? Behavioral and Brain Sciences, 11, 355–372.
  • First, M. B., Gibbon, M., Spitzer, R. L., Williams, J. B. W., & Benjamin, L. S. (1991). Structured Clinical Interview for DSM-IV Screen Patient Questionnaire—Extended. Toronto, ON: Multi-Health Systems.
  • Fjell, A. M., Walhovd, K. B., Fischl, B., & Reinvang, I. (2007). Cognitive function, P3a/P3b brain potentials, and cortical thickness in aging. Human Brain Mapping, 28, 1098–1116.
  • Friedman, D., Cycowicz, Y. M., & Gaeta, H. (2001). The novelty P3: An event-related brain potential (ERP) sign of the brain's evaluation of novelty. Neuroscience and Biobehavioral Reviews, 25, 355–373.
  • Friedman, D., Nessler, D., Johnson, R., Jr., Ritter, W., & Bersick, M. (2008). Age-related changes inexecutive function: An event-related potential (ERP) investigation of task-switching. Aging, Neuropsychology, and Cognition, 15, 95–128.
  • Glenn, S. W., Sinha, R., & Parsons, O. A. (1993). Electrophysiological indices predict resumption of drinking in sober alcoholics. Alcohol, 10, 89–95.
  • Halgren, E., Marinkovic, K., & Chauvel, P. (1998). Generators of the late cognitive potentials in auditory and visual oddball tasks. Electroencephalography and Clinical Neurophysiology, 106, 156–164.
  • Hicks, B. M., Bernat, E., Malone, S. M., Iacono, W. G., Patrick, C. J., Krueger, R. F., (2007). Genes mediate the association between P3 amplitude and externalizing disorders. Psychophysiology, 44, 98–105.
  • Hicks, B. M., Krueger, R. F., Iacono, W. G., McGue, M., & Patrick, C. J. (2004). Family transmission and heritability of externalizing disorders: A twin-family study. Archives of General Psychiatry, 61, 922–928.
  • Hill, S. Y., Steinhauer, S., Lowers, L., & Locke, J. (1995). Eight-year longitudinal follow-up of P3 and clinical outcome in children from high-risk for alcoholism families. Biological Psychiatry, 37, 823–827.
  • Houston, R. J., Stanford, M. S., Villemarette-Pittman, N. R., Conklin, S. M., & Helfritz, L. E. (2003). Neurobiological correlates and clinical implications of aggressive subtypes. Journal of Forensic Neuropsychology, 3, 67–87.
  • Iacono, W. G., Malone, S. M., & McGue, M. (2003). Substance use disorders, externalizing psychopathology, and P300 event-related potential amplitude. International Journal of Psychophysiology, 48, 147–178.
  • Katsanis, J., Iacono, W. G., McGue, M. K., & Carlson, S. R. (1997). P300 event-related potential heritability in monozygotic and dizygotic twins. Psychophysiology, 34, 47–58.
  • Kawada, R., Yoshizumi, M., Hirao, K., Fujiwara, H., Miyata, J., Shimizu, M., (2009). Brain volume and dysexecutive behavior in schizophrenia. Progress in Neuropsychopharmacology & Biological Psychiatry, 33, 1255–1260.
  • Kelly, J. F., & Moos, R. (2003). Dropout from 12-step self-help groups, prevalence, predictors, and counteracting treatment influences. Journal of Substance Abuse Treatment, 24, 241–250.
  • Kok, A. (2001). On the utility of P3 amplitude as a measure of processing capacity. Psychophysiology, 38, 557–577.
  • Krueger, R. F., Hicks, B. M., Patrick, C. J., Carlson, S. R., Iacono, W. G., & McGue, M. (2002). Etiological connections among substance dependence, antisocial behavior, and personality: Modeling the externalizing spectrum. Journal of Abnormal Psychology, 111, 411–424.
  • McKellar, J., Kelly, J., Harris, A., & Moos, R. (2006). Pretreatment and during treatment risk factors for dropout among patients with substance use disorders. Addictive Behaviors, 31, 450–460.
  • Parsons, O. A. (1994). Neuropsychological measures and event-related potentials in alcoholics: Interrelationships, long-term reliabilities, and prediction of resumption of drinking. Journal of Clinical Psychology, 50, 37–46.
  • Patkar, A. A., Murray, H. W., Mannelli, P., Gottheil, E., Weinstein, S. P., & Vergare, M. J. (2004). Pre-treatment measures of impulsivity, aggression and sensation seeking are associated with treatment outcome for African–American cocaine-dependent patients. Journal of Addictive Diseases, 23, 109–122.
  • Patrick, C. J., Bernat, E. M., Malone, S. M., Iacono, W. G., Krueger, R. F., & McGue, M. (2006). P300 amplitude as an indicator of externalizing in adolescent males. Psychophysiology, 43, 84–92.
  • Polich, J. (2007). Updating p300: An integrative theory of P3a and P3b. Clinical Neurophysiology, 118, 2128–2148.
  • Polich, J., Pollock, V. E., & Bloom, F. E. (1994). Meta-analysis on P300 amplitude from males at risk for alcoholism. Psychological Bulletin, 115, 55–73.
  • Porjesz, B., & Begleiter, H. (1993). Neurophysiological factors associated with alcoholism. In S. J. Nixon & W. A. Hunt (Eds.), Alcohol-induced brain damage (pp. 89–120). Rockville, MD: National Institute of Health.
  • Porjesz, B., Begleiter, H., & Samuelly, I. (1980). Cognitive deficits in chronic alcoholics and elderly subjects by evoked brain potentials. Acta Psychiatrica Scandinavica, 286, 15–29.
  • Raine, A., Lencz, T., Bihrle, S., LaCasse, L., & Colletti, P. (2000). Reduced prefrontal gray matter volume and reduced autonomic activity in antisocial personality disorder. Archives of General Psychiatry, 57, 119–127.
  • Saunders, J. B., Aasland, O. G., Babor, T. F., De La Fuente, J. R., & Grant, M. (1993). Development of the Alcohol Use Disorders Identification Test (AUDIT): WHO collaborative project on early detection of persons with harmful alcohol consumption—II. Addiction, 88, 791–804.
  • Singh, S. M., & Basu, D. (2009). The P300 event-related potential and its possible role as an endophenotype for studying substance use disorders: A review. Addiction Biology, 14, 298–309.
  • Skinner, H. (1982). The drug abuse screening test. Addictive Behaviors, 7, 363–371.
  • Smit, D. J. A., Posthuma, D., Boomsma, D. I., & de Geus, E. J. C. (2007). Genetic contribution to the P3 in young and middle-aged adults. Twin Research and Human Genetics, 10, 335–347.
  • Vasic, N., Walter, H., Höse, A., & Wolf, R. C. (2008). Gray matter reduction associated with psychopathology and cognitive dysfunction in unipolar depression: A voxel-based morphometry study. Journal of Affective Disorders, 109, 107–116.
  • Wan, L., Baldridge, R. M., Colby, A. M., & Stanford, M. (2010). Association of P3 amplitude to treatment completion in substance dependent individuals. Psychiatry Research, 177, 223–227.
  • Wechsler, D. (1999). The Wechsler Abbreviated Scale of Intelligence. San Antonio, TX: The Psychological Corporation.
  • West, R., Schwarb, H., & Johnson, B. N. (2010). The influence of age and individual differences in executive function on stimulus processing in the oddball task. Cortex, 46, 550–563.

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