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Articles

Normative data for evaluating mild traumatic brain injury with a handheld neurocognitive assessment tool

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References

  • Aubry, M., Cantu, R., Dvorak, J., Graf-Baumann, T., Johnston, K., Kelly, J., … Schamasch, P. (2002). Summary and agreement statement of the First International Conference on Concussion in Sport, Vienna 2001. Recommendations for the improvement of safety and health of athletes who may suffer concussive injuries. British Journal of Sports Medicine, 36(1), 6–10. doi:10.1136/bjsm.36.1.6
  • Belanger, H. G., & Vanderploeg, R. D. (2005). The neuropsychological impact of sports-related concussion: A meta-analysis. Journal of the International Neuropsychological Society, 11(4), 345–357. doi:10.1017/S1355617705050411
  • Bleiberg, J., Garmoe, W. S., Halpern, E. L., Reeves, D. L., & Nadler, J. D. (1997). Consistency of within-day and across-day performance after mild brain injury. Neuropsychiatry, Neuropsychology, and Behavioral Neurology, 10(4), 247–253.
  • Bleiberg, J., Halpern, E. L., Reeves, D., & Daniel, J. C. (1998). Future directions for the neuropsychological assessment of sports concussion. The Journal of Head Trauma Rehabilitationt, 13(2), 36–44.
  • Bleiberg, J., Kane, R. L., Reeves, D. L., Garmoe, W. S., & Halpern, E. (2000). Factor analysis of computerized and traditional tests used in mild brain injury research. The Clinical Neuropsychologist, 14(3), 287–294. doi:10.1076/1385-4046(200008)14:3;1-P;FT287
  • Broglio, S. P., Macciocchi, S. N., & Ferrara, M. S. (2007). Sensitivity of the concussion assessment battery. Neurosurgery, 60(6), 1050–1057; discussion 1057–1058. doi:10.1227/01.NEU.0000255479.90999.C0
  • Bryan, C., & Hernandez, A. M. (2012). Magnitudes of decline on Automated Neuropsychological Assessment Metrics subtest scores relative to predeployment baseline performance among service members evaluated for traumatic brain injury in Iraq. Journal of Head Trauma Rehabilitation, 27(1), 45–54. doi:10.1097/HTR.0b013e318238f146
  • Centers for Disease Control and Prevention. (2003). Report to congress on mild traumatic brain injury in the United States: Steps to prevent a serious public health problem. Atlanta, GA: National Center for Injury Prevention and Control.
  • Centers for Disease Control and Prevention. (2007). Nonfatal traumatic brain injuries from sports and recreation activities - United States, 2001–2005. Morbidity and Mortality Weekly Report, 56(29), 733–737. doi:10.1001/jama.298.11.1271
  • Cernich, A. N., Bleiberg, J., Roebuck-Spencer, T. M., Ivins, B., Schwab, K., Reeves, D. L., … Warden, D. (2004). Prediction of concussion status using a computerized neuropsychological measure: A logistic regression analysis. Abstract presented at the 32nd annual meeting of the International Neuropsychological Society conference, February 4–7, Baltimore, Maryland, USA.
  • Cernich, A. N., Reeves, D., Sun, W., & Bleiberg, J. (2007). Automated neuropsychological assessment metrics sports medicine battery. Archives of Clinical Neuropsychology, 22(Suppl 1), S101–S114. doi:10.1016/j.acn.2006.10.008
  • Coldren, R. L., Russell, M. L., Parish, R. V., Dretsch, M., & Kelly, M. P. (2012). The ANAM lacks utility as a diagnostic or screening tool for concussion more than 10 days following injury. Military Medicine, 177(2), 179–183. doi:10.7205/milmed-d-11-00278
  • Covassin, T., Elbin, R. J., III, Stiller-Ostrowski, J. L., & Kontos, A. P. (2009). Immediate post-concussion assessment and cognitive testing (ImPACT) practices of sports medicine professionals. Journal of Athletic Training, 44(6), 639–644. doi:10.4085/1062-6050-44.6.639
  • Craik, F. I. M., & Bialystok, E. (2006). Cognition through the lifespan: Mechanisms of change. Trends in Cognitive Sciences, 10(3), 131–138. doi:10.1016/j.tics.2006.01.007
  • CSRC. (2013). ANAM technical manual. Norman, OK: Cognitive Science Research Center, University of Oklahoma.
  • de Azeredo Passos, V. M., Giatti, L., Bensenor, I., Tiemeier, H., Ikram, M. A., de Figueiredo, R. C., … Barreto, S. M. (2015). Education plays a greater role than age in cognitive test performance among participants of the Brazilian Longitudinal Study of Adult Health (ELSA-Brasil). BMC Neurology, 15(1), 1–9. doi:10.1186/s12883-015-0454-6
  • Echemendia, R. J., Bruce, J. M., Bailey, C. M., Sanders, J. F., Arnett, P., & Vargas, G. (2012). The utility of post-concussion neuropsychological data in identifying cognitive change following sports-related MTBI in the absence of baseline data. The Clinical Neuropsychologist, 26(7), 1077–1091. doi:10.1080/13854046.2012.721006
  • Echemendia, R. J., Iverson, G. L., McCrea, M., Macciocchi, S. N., Gioia, G. A., Putukian, M., & Comper, P. (2013). Advances in neuropsychological assessment of sport-related concussion. British Journal of Sports Medicine, 47(5), 294–298. doi:10.1136/bjsports-2013-092186
  • Faul, M., Xu, L., Wald, M. M., & Coronado, V. G. (2010). Traumatic brain injury in the United States: Emergency department visits, hospitalizations and deaths 2002–2006. Atlanta, GA: Centers for Disease Control and Prevention, National Center for Injury Prevention and Control.
  • Gaw, C. E., & Zonfrillo, M. R. (2016). Emergency department visits for head trauma in the United States. BMC Emergency Medicine, 16(1), 5. doi:10.1186/s12873-016-0071-8
  • Gualtieri, C. T., & Johnson, L. G. (2006). Reliability and validity of a computerized neurocognitive test battery, CNS vital signs. Archives of Clinical Neuropsychology, 21(7), 623–643. doi:10.1016/j.acn.2006.05.007
  • Heaton, R. K., Ryan, L., Grant, I., & Matthews, C. G. (1996). Demographic influences on neuropsychological test performance. In I. Grant & K. Adams (Eds.), Neuropsychological assessment of neuropsychiatric disorders (2nd ed., pp. 141–163). New York, NY: Oxford University Press.
  • Hoge, C. W., McGurk, D., Thomas, J. L., Cox, A. L., Engel, C. C., & Castro, C. A. (2008). Mild traumatic brain injury in U.S. Soldiers returning from Iraq. New England Journal of Medicine, 358(5), 453–463. doi:10.1056/NEJMoa072972
  • Iverson, G. L., & Schatz, P. (2015). Advanced topics in neuropsychological assessment following sport-related concussion. Brain Injury, 29(2), 263–275. doi:10.3109/02699052.2014.965214
  • Iverson, G. L., & Webbe, F. M. (2011). Evidence-based neuropsychological assessment in sport-related concussion. In F. M. Webbe (Ed.), The Handbook of Sport Neuropsychology (pp. 131–153). New York, NY: Springer.
  • Ivins, B. J., Lange, R. T., Cole, W. R., Kane, R., Schwab, K. A., & Iverson, G. L. (2015). Using base rates of low scores to interpret the ANAM4 TBI-MIL battery following mild traumatic brain injury. Archives of Clinical Neuropsychology, 30(1), 26–38. doi:10.1093/arclin/acu072
  • Kane, R. L., Roebuck-Spencer, T. M., Short, P., Kabat, M., & Wilken, J. (2007). Identifying and monitoring cognitive deficits in clinical populations using Automated Neuropsychological Assessment Metrics (ANAM) tests. Archives of Clinical Neuropsychology, 22(S1), S115–S126. doi:10.1016/j.acn.2006.10.006
  • Karr, J. E., Areshenkoff, C. N., & Garcia-Barrera, M. A. (2014). The neuropsychological outcomes of concussion: A systematic review of meta-analyses on the cognitive sequelae of mild traumatic brain injury. Neuropsychology, 28(3), 321–336. doi:10.1037/neu0000037
  • Kelly, M. P., Coldren, R. L., Parish, R. V., Dretsch, M. N., & Russell, M. L. (2012). Assessment of acute concussion in the combat environment. Archives of Clinical Neuropsychology, 27(4), 375–388. doi:10.1093/arclin/acs036
  • Luethcke, C. A., Bryan, C. J., Morrow, C. E., & Isler, W. C. (2011). Comparison of concussive symptoms, cognitive performance, and psychological symptoms between acute blast-versus nonblast-induced mild traumatic brain injury. Journal of the International Neuropsychological Society, 17(1), 36–45. doi:10.1017/S1355617710001207
  • MacGregor, A. J., Shaffer, R. A., Dougherty, A. L., Galarneau, M. R., Raman, R., Baker, D. G., … Corson, K. S. (2010). Prevalence and psychological correlates of traumatic brain injury in operation Iraqi freedom. Journal of Head Trauma Rehabilitation, 25(1), 1–8. doi:10.1097/HTR.0b013e3181c2993d
  • Malhotra, R., Haaland, B. A., Chei, C.-L., Chan, A., Malhotra, C., & Matchar, D. B. (2015). Presence of and correction for interviewer error on an instrument assessing cognitive function of older adults. Geriatrics & Gerontology International, 15(3), 372–380. doi:10.1111/ggi.12331
  • Matute, E., Montiel, T., Pinto, N., Rosselli, M., Ardila, A., & Zarabozo, D. (2012). Comparing cognitive performance in illiterate and literate children. International Review of Education, 58(1), 109–127.
  • McCrory, P., Meeuwisse, W. H., Aubry, M., Cantu, R. C., Dvorak, J., Echemendia, R. J., … Turner, M. (2013). Consensus statement on concussion in sport: The 4th International Conference on Concussion in Sport, Zurich, November 2012. Journal of Athletic Training, 48(4), 554–575. doi:10.4085/1062-6050-48.4.05
  • Nelson, L. D., LaRoche, A. A., Pfaller, A. Y., Lerner, E. B., Hammeke, T. A., Randolph, C., … McCrea, M. A. (2016). Prospective, head-to-head study of three computerized neurocognitive assessment tools (CNTs): Reliability and validity for the assessment of sport-related concussion. Journal of the International Neuropsychological Society, 22(1), 24–37. doi:10.1017/S1355617715001101
  • Norris, J. N., Carr, W., Herzig, T., Labrie, D. W., & Sams, R. (2013). ANAM4 TBI reaction time-based tests have prognostic utility for acute concussion. Military Medicine, 178(7), 767–774. doi:10.7205/MILMED-D-12-00493
  • Olejnik, S., & Algina, J. (2003). Generalized eta and omega squared statistics: Measures of effect size for some common research designs. Psychological Methods, 8(4), 434–447. doi:10.1037/1082-989X.8.4.434
  • Persoon, A., Van der Cruijsen, M., Schlattmann, N., Simmes, F., & Van Achterberg, T. (2011). How older people nurses assess cognitive function through daily observation. International Journal of Older People Nursing, 6(2), 102–109. doi:10.1111/j.1748-3743.2010.00234.x
  • Prichep, L. S., Jacquin, A., Filipenko, J., Dastidar, S. G., Zabele, S., Vodencarevic, A., & Rothman, N. S. (2012). Classification of traumatic brain injury severity using informed data reduction in a series of binary classifier algorithms. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 20(6), 806–822. doi:10.1109/TNSRE.2012.2206609
  • Resch, J. E., McCrea, M. A., & Cullum, C. M. (2013). Computerized neurocognitive testing in the management of sport-related concussion: An update. Neuropsychology Review, 23(4), 335–349. doi:10.1007/s11065-013-9242-5
  • Roebuck-Spencer, T. M., Reeves, D. L., Bleiberg, J., Cernich, A. N., Schwab, K., Ivins, B., … Warden, D. (2008). Influence of demographics on computerized cognitive testing in a military sample. Military Psychology, 20, 187–203. doi:10.1080/08995600802118825
  • Roebuck-Spencer, T. M., Vincent, A. S., Schlegel, R. E., & Gilliland, K. (2013). Evidence for added value of baseline testing in computer-based cognitive assessment. Journal of Athletic Training, 48(4), 499–505. doi:10.4085/1062-6050-48.3.11
  • Schmidt, J. D., Register-Mihalik, J. K., Mihalik, J. P., Kerr, Z. Y., & Guskiewicz, K. M. (2012). Identifying Impairments after concussion: Normative data versus individualized baselines. Medicine & Science in Sports & Exercise, 44(9), 1621–1628. doi:10.1249/MSS.0b013e318258a9fb
  • Schretlen, D. J., Testa, S. M., Winicki, J. M., Pearlson, G. D., & Gordon, B. (2008). Frequency and bases of abnormal performance by healthy adults on neuropsychological testing. Journal of the International Neuropsychological Society, 14(3), 436–445. doi:10.1017/S1355617708080387
  • Thorne, D. R. (2006). Throughput: A simple performance index with desirable characteristics. Behavior Research Methods, 38(4), 569–573. doi:10.3758/bf03193886
  • Vanderploeg, R. D., Belanger, H. G., & Curtiss, G. (2009). Mild traumatic brain injury and posttraumatic stress disorder and their associations with health symptoms. Archives of Physical Medicine and Rehabilitation, 90(7), 1084–1093. doi:10.1016/j.apmr.2009.01.023
  • Vincent, A. S., Bleiberg, J., Yan, S., Ivins, B., Reeves, D. L., Schwab, K., … Warden, D. (2008). Reference data from the automated Neuropsychological Assessment Metrics for use in traumatic brain injury in an active duty military sample. Military Medicine, 173(9), 836–852.
  • Vincent, A. S., Roebuck-Spencer, T. M., Gilliland, K., & Schlegel, R. (2012). Automated neuropsychological assessment metrics (v4) traumatic brain injury battery: Military normative data. Military Medicine, 177(3), 256–269. doi:10.7205/milmed-d-11-00289
  • Warden, D. (2006). Military TBI during the Iraq and Afghanistan wars. Journal of Head Trauma Rehabilitation, 21(5), 398–402. doi:10.1097/00001199-200609000-00004
  • Woodhouse, J., Heyanka, D. J., Scott, J., Vincent, A., Roebuck-Spencer, T. M., Domboski-Davidson, K., … Adams, R. (2013). Efficacy of the ANAM general neuropsychological screening battery (ANAM GNS) for detecting neurocognitive impairment in a mixed clinical sample. The Clinical Neuropsychologist, 27(3), 376–385. doi:10.1080/13854046.2012.762427
  • Yallampalli, R., Wilde, E. A., Bigler, E. D., McCauley, S. R., Hanten, G., Troyanskaya, M., … Levin, H. S. (2013). Acute white matter differences in the fornix following mild traumatic brain injury using diffusion tensor imaging. Journal of Neuroimaging, 23(2), 224–227. doi:10.1111/j.1552-6569.2010.00537.x

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