Detecting malingered neurocognitive dysfunction using the reliable digit span in traumatic brain injury

被引:108
|
作者
Mathias, CW
Greve, KW [1 ]
Bianchini, KJ
Houston, RJ
Crouch, JA
机构
[1] Univ New Orleans, Dept Psychol, New Orleans, LA 70148 USA
[2] Inst Living, Hartford, CT 06106 USA
关键词
response bias; malingering; forensic; neuropsychology; assessment; Wechsler Adult Intelligence Scale;
D O I
10.1177/1073191102009003009
中图分类号
B849 [应用心理学];
学科分类号
040203 ;
摘要
This study assessed the effectiveness of Greiffenstein's Reliable Digit Span (RDS) score for the detection of malingered neurocognitive dysfunction. Participants were 54 traumatic brain injury patients referred for neuropsychological evaluation. Twenty-four met the Slick, Sherman, and Iverson criteria for at least probable malingered neurocognitive dysfunction. The control group was composed of 30 patients without external incentive and who thus did not meet the Slick criteria. All patients completed the digit span test as part of either the WAIS-R or WAIS-III. The RDS scores were calculated, and sensitivity, specificity, and predictive power were examined for several cutoffs. Classification accuracy for the RDS was excellent. Issues related to the clinical application of this technique are discussed.
引用
收藏
页码:301 / 308
页数:8
相关论文
共 50 条
  • [41] Prospective Neurocognitive Longitudinal Study of Mild Traumatic Brain Injury
    Georgieva, S.
    Azmi, H.
    Ogedegbe, C.
    Wylie, G.
    Dave, P.
    Feldman, J.
    Voelbel, G.
    ARCHIVES OF CLINICAL NEUROPSYCHOLOGY, 2014, 29 (06)
  • [42] IMPACT OF QUETIAPINE ON NEUROCOGNITIVE OUTCOMES AFTER TRAUMATIC BRAIN INJURY
    Beatty, Julia
    Keegan, Shaun
    Goodman, Michael
    Foertsch, Madeline
    Sangha, Kiranpal
    Hanseman, Dennis
    Bernert, Silke
    Droege, Chris
    CRITICAL CARE MEDICINE, 2019, 47
  • [43] The pathophysiological approach to neurocognitive impairment following traumatic brain injury
    Papadopoulou, K.
    Tsaousi, G.
    ARCHIVES OF HELLENIC MEDICINE, 2020, 37 (04): : 445 - 456
  • [44] Exercise to Enhance Neurocognitive Function After Traumatic Brain Injury
    Fogelman, David
    Zafonte, Ross
    PM&R, 2012, 4 (11) : 908 - 913
  • [45] VESTIBULAR DYSFUNCTION IN ACUTE TRAUMATIC BRAIN INJURY
    Tsang, K.
    Marcus, H. J.
    Paine, H.
    Sargeant, M.
    Jones, B.
    Smith, R.
    Wilson, M. H.
    Seemungal, B. M.
    JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2019, 90 (03): : E12 - E12
  • [46] Network dysfunction after traumatic brain injury
    Sharp, David J.
    Scott, Gregory
    Leech, Robert
    NATURE REVIEWS NEUROLOGY, 2014, 10 (03) : 156 - 166
  • [47] Network dysfunction after traumatic brain injury
    David J. Sharp
    Gregory Scott
    Robert Leech
    Nature Reviews Neurology, 2014, 10 : 156 - 166
  • [48] Olfactory Dysfunction as a Consequence of Traumatic Brain Injury
    Frasnelli, Johannes
    CHEMICAL SENSES, 2018, 43 (07) : E157 - E158
  • [49] Mitochondrial damage and dysfunction in traumatic brain injury
    Lifshitz, J
    Sullivan, PG
    Hovda, DA
    Wieloch, T
    McIntosh, TK
    MITOCHONDRION, 2004, 4 (5-6) : 705 - 713
  • [50] Cognitive Dysfunction in Patients With Traumatic Brain Injury
    Lauterbach, Margo D.
    Notarangelo, Paula
    Koliatsos, Vassilis E.
    JOURNAL OF NEUROPSYCHIATRY AND CLINICAL NEUROSCIENCES, 2012, 24 (02) : 22 - 22