275
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Brain’s compensatory response to drug-induced cognitive impairment

ORCID Icon, , , ORCID Icon, , , & show all
Pages 1000-1012 | Received 25 Aug 2017, Accepted 06 Mar 2018, Published online: 02 May 2018

References

  • Aron, A. R., Fletcher, P. C., Bullmore, E. T., Sahakian, B. J., & Robbins, T. W. (2003). Stop-signal inhibition disrupted by damage to right inferior frontal gyrus in humans. Nature Neuroscience, 6(2), 115–116. doi:10.1038/nn1003
  • Aron, A. R., Robbins, T. W., & Poldrack, R. A. (2014). Inhibition and the right inferior frontal cortex: One decade on. Trends in Cognitive Sciences, 18(4), 177–185. doi:10.1016/j.tics.2013.12.003
  • Becker, J. T., Mintun, M. A., Aleva, K., Wiseman, M. B., Nichols, T., & DeKosky, S. T. (1996). Compensatory reallocation of brain resources supporting verbal episodic memory in Alzheimer’s disease. Neurology, 46(3), 692–700. doi:10.1212/WNL.46.3.692
  • Berlant, J. L. (2004). Prospective open-label study of add-on and monotherapy topiramate in civilians with chronic nonhallucinatory posttraumatic stress disorder. BMC Psychiatry, 4, 24. doi:10.1186/1471-244X-4-24
  • Berre, A.-P., Pitel, A.-L., Chanraud, S., Beaunieux, H., Eustache, F., Martinot, J.-L., … Adolf, P. (2014). Chronic alcohol consumption and its effect on nodes of frontocerebellar and limbic circuitry: Comparison of effects in France and the United States. Human Brain Mapping, 35(9), 4635–4653.
  • Bonnet, M. C., Allard, M., Dilharreguy, B., Deloire, M., Petry, K. G., & Brochet, B. (2010). Cognitive compensation failure in multiple sclerosis. Neurology, 75(14), 1241–1248. doi:10.1212/WNL.0b013e3181f612e3
  • Bootsma, H. P. R., Coolen, F., Aldenkamp, A. P., Arends, J., Diepman, L., Hulsman, J., ... de Krom, M. (2004). Topiramate in clinical practice: Long-term experience in patients with refractory epilepsy referred to a tertiary epilepsy center. Epilepsy & Behavior, 5(3), 380–387.
  • Bootsma, H. P. R., Coolen, F., Aldenkamp, A. P., Arends, J., Diepman, L., Hulsman, J., … de Krom, M. (2004). Topiramate in clinical practice: Long-term experience in patients with refractory epilepsy referred to a tertiary epilepsy center. Epilepsy & Behavior, 5(3), 380–387. doi:10.1016/j.yebeh.2004.03.002
  • Cabeza, R. (2002). Hemispheric asymmetry reduction in older adults: The HAROLD model. Psychology and Aging, 17(1), 85.
  • Chengappa, K. R., Gershon, S., & Levine, J. (2001). The evolving role of topiramate among other mood stabilizers in the management of bipolar disorder. Bipolar Disorders, 3(5), 215–232. doi:10.1034/j.1399-5618.2001.30501.x
  • Chong, M. S., & Libretto, S. E. (2003). The rationale and use of topiramate for treating neuropathic pain. The Clinical Journal of Pain, 19(1), 59–68.
  • Christensen, J., Højskov, C. S., Dam, M., & Poulsen, J. H. (2001). Plasma concentration of topiramate correlates with cerebrospinal fluid concentration. Therapeutic Drug Monitoring, 23(5), 529–535.
  • Cirulli, E. T., Urban, T. J., Marino, S. E., Linney, K. N., Birnbaum, A. K., Depondt, C., … Goldstein, D. B. (2012). Genetic and environmental correlates of topiramate-induced cognitive impairment. Epilepsia, 53(1), e5–e8. doi:10.1111/j.1528-1167.2011.03322.x
  • Clark, A. M., Kriel, R. L., Leppik, I. E., Marino, S. E., Mishra, U., Brundage, R. C., & Cloyd, J. C. (2013). Intravenous topiramate: Comparison of pharmacokinetics and safety with the oral formulation in healthy volunteers. Epilepsia, 54(6), 1099–1105. doi:10.1111/epi.12134
  • Clément, F., & Belleville, S. (2010). Compensation and disease severity on the memory-related activations in mild cognitive impairment. Biological Psychiatry, 68(10), 894–902.
  • Coppola, G., Verrotti, A., Resicato, G., Ferrarelli, S., Auricchio, G., Operto, F. F., & Pascotto, A. (2008). Topiramate in children and adolescents with epilepsy and mental retardation: A prospective study on behavior and cognitive effects. Epilepsy & Behavior, 12(2), 253–256.
  • De Araujo Filho, G. M., Pascalicchio, T. F., Lin, K., Sousa, P. S., & Yacubian, E. M. T. (2006). Neuropsychiatric profiles of patients with juvenile myoclonic epilepsy treated with valproate or topiramate. Epilepsy & Behavior, 8(3), 606–609. doi:10.1016/j.yebeh.2006.01.016
  • Delorme, A., & Makeig, S. (2004). EEGLAB: An open source toolbox for analysis of single-trial EEG dynamics including independent component analysis. Journal of Neuroscience Methods, 134(1), 9–21. doi:10.1016/j.jneumeth.2003.10.009
  • Doose, D. R., & Streeter, A. J. (2002). Topiramate: Chemistry, biotransformation and pharmacokinetics. Antiepileptic Drugs (5th ed., pp. 727–734). Philadelphia: Lippincott Williams & Wilkins.
  • Easterling, D. E. (1988). Plasma pharmacokinetics of topiramate, a new anticonvulsant in humans [Abstract]. Epilepsia, 29, 662.
  • Fritz, N., Glogau, S., Hoffmann, J., Rademacher, M., Elger, C. E., & Helmstaedter, C. (2005). Efficacy and cognitive side effects of tiagabine and topiramate in patients with epilepsy. Epilepsy & Behavior, 6(3), 373–381.
  • Gomer, B., Wagner, K., Frings, L., Saar, J., Carius, A., Härle, M., … Schulze-Bonhage, A. (2007). The influence of antiepileptic drugs on cognition: A comparison of levetiracetam with topiramate. Epilepsy & Behavior, 10(3), 486–494.
  • Grady, C. L., Maisog, J. M., Horwitz, B., Ungerleider, L. G., Mentis, M. J., Salerno, J. A., … Haxby, J. V. (1994). Age-related changes in cortical blood flow activation during visual processing of faces and location. The Journal of Neuroscience, 14(3), 1450–1462.
  • Grady, C. L., McIntosh, A. R., Beig, S., Keightley, M. L., Burian, H., & Black, S. E. (2003). Evidence from functional neuroimaging of a compensatory prefrontal network in Alzheimer’s disease. The Journal of Neuroscience, 23(3), 986–993.
  • Hämäläinen, A., Pihlajamäki, M., Tanila, H., Hänninen, T., Niskanen, E., Tervo, S., … Soininen, H. (2007). Increased fMRI responses during encoding in mild cognitive impairment. Neurobiology of Aging, 28(12), 1889–1903.
  • Hillary, F. G., Genova, H. M., Chiaravalloti, N. D., Rypma, B., & DeLuca, J. (2006). Prefrontal modulation of working memory performance in brain injury and disease. Human Brain Mapping, 27(11), 837–847.
  • Javed, A., Cohen, B., Detyniecki, K., Hirsch, L. J., Legge, A., Chen, B., … Choi, H. (2015). Rates and predictors of patient-reported cognitive side effects of antiepileptic drugs: An extended follow-up. Seizure, 29, 34–40. doi:10.1016/j.seizure.2015.03.013
  • Jung, K.-Y., Cho, J.-W., Joo, E. Y., Kim, S. H., Choi, K. M., Chin, J., … Hong, S. B. (2010). Cognitive effects of topiramate revealed by standardised low-resolution brain electromagnetic tomography (sLORETA) of event-related potentials. Clinical Neurophysiology, 121(9), 1494–1501.
  • Kay, M., & Wobbrock, J. (2016). ARTool: Aligned rank transform for nonparametric factorial ANOVAs. In R Package Version 0.10, 2. doi:10.5281/zenodo.48543.github.com/mjskay/ARTool
  • Kerr, B., Vitiello, M. V., Calogero, M., Wilkie, F., & Prinz, P. N. (1998). Memory-scanning task performance in Alzheimer’s Disease. Aging Clinical and Experimental Research, 10(5), 401–410.
  • Kotchoubey, B. I., Jordan, J. S., Grözinger, B., Westphal, K. P., & Kornhuber, H. H. (1996). Event-related brain potentials in a varied-set memory search task: A reconsideration. Psychophysiology, 33(5), 530–540.
  • Langtry, H. D., Gillis, J. C., & Davis, R. (1997). Topiramate. Drugs, 54(5), 752–773.
  • Lee, H.-W., Jung, D.-K., Suh, C.-K., Kwon, S.-H., & Park, S.-P. (2006). Cognitive effects of low-dose topiramate monotherapy in epilepsy patients: A 1-year follow-up. Epilepsy & Behavior, 8(4), 736–741.
  • Lee, S., Sziklas, V., Andermann, F., Farnham, S., Risse, G., Gustafson, M., … Jones-Gotman, M. (2003). The effects of adjunctive topiramate on cognitive function in patients with epilepsy. Epilepsia, 44(3), 339–347. doi:10.1046/j.1528-1157.2003.27402.x
  • Marino, S. E., Pakhomov, S. V. S., Han, S., Anderson, K. L., Ding, M., Eberly, L. E., … Birnbaum, A. K. (2012). The effect of topiramate plasma concentration on linguistic behavior, verbal recall and working memory. Epilepsy & Behavior, 24(3), 365–372. doi:10.1016/j.yebeh.2012.04.120
  • Mohamed, K., Appleton, R., & Rosenbloom, L. (2000). Efficacy and tolerability of topiramate in childhood and adolescent epilepsy: A clinical experience. Seizure, 9(2), 137–141. doi:10.1053/seiz.2000.0387
  • Motamedi, G., & Meador, K. (2003). Epilepsy and cognition. Epilepsy & Behavior, 4, 25–38.
  • Perucca, E. (1997). A pharmacological and clinical review on topiramate, a new antiepileptic drug. Pharmacological Research, 35(4), 241–256.
  • Ramsay, R. E., Uthman, B., Pryor, F. M., Rowan, A. J., Bainbridge, J., Spitz, M., … Frederick, T. E. (2008). Topiramate in older patients with partial-onset seizures: A pilot double-blind, dose-comparison study. Epilepsia, 49(7), 1180–1185.
  • Reuter-Lorenz, P. A., & Cappell, K. A. (2008). Neurocognitive aging and the compensation hypothesis. Current Directions in Psychological Science, 17(3), 177–182.
  • Reuter-Lorenz, P. A., Jonides, J., Smith, E. E., Hartley, A., Miller, A., Marshuetz, C., & Koeppe, R. A. (2000). Age differences in the frontal lateralization of verbal and spatial working memory revealed by PET. Journal of Cognitive Neuroscience, 12(1), 174–187.
  • Rosenfeld, W. E., Doose, D. R., Walker, S. A., & Nayak, R. K. (1997). Effect of topiramate on the pharmacokinetics of an oral contraceptive containing norethindrone and ethinyl estradiol in patients with epilepsy. Epilepsia, 38(3), 317–323.
  • Rosenthal, R., & Rosnow, R. L. (1991). Essentials of behavioral research: Methods and data analysis. McGraw-Hill Humanities Social, Chapter 12, p. 361. Retrieved from www.socialpsychology.org/download/111533/EssentialsofBehavioralResearch.pdf.
  • Rypma, B., Berger, J. S., Prabhakaran, V., Martin Bly, B., Kimberg, D. Y., Biswal, B. B., & D’Esposito, M. (2006). Neural correlates of cognitive efficiency. NeuroImage, 33(3), 969–979. doi:10.1016/j.neuroimage.2006.05.065
  • Sachdeo, R. C., Sachdeo, S. K., Walker, S. A., Kramer, L. D., Nayak, R. K., & Doose, D. R. (1996). Steady-state pharmacokinetics of topiramate and carbamazepine in patients with epilepsy during monotherapy and concomitant therapy. Epilepsia, 37(8), 774–780.
  • Siniscalchi, A., Gallelli, L., Russo, E., & De Sarro, G. (2013). A review on antiepileptic drugs-dependent fatigue: Pathophysiological mechanisms and incidence. European Journal of Pharmacology, 718(1), 10–16. doi:10.1016/j.ejphar.2013.09.013
  • Solé-Padullés, C., Bartrés-Faz, D., Junqué, C., Vendrell, P., Rami, L., & Clemente, I. C., others. (2009). Brain structure and function related to cognitive reserve variables in normal aging, mild cognitive impairment and Alzheimer’s disease. Neurobiology of Aging, 30(7), 1114–1124.
  • Steffener, J., Brickman, A. M., Rakitin, B. C., Gazes, Y., & Stern, Y. (2009). The impact of age-related changes on working memory functional activity. Brain Imaging and Behavior, 3(2), 142–153.
  • Stern, Y. (2012). Cognitive reserve in ageing and Alzheimer’s disease. Lancet Neurology, 11(11), 1006–1012. doi:10.1016/S1474-4422(12)70191-6
  • Stern, Y., Moeller, J. R., Anderson, K. E., Luber, B., Zubin, N. R., DiMauro, A. A., … Sackeim, H. A. (2000). Different brain networks mediate task performance in normal aging and AD defining compensation. Neurology, 55(9), 1291–1297. doi:10.1212/WNL.55.9.1291
  • Sternberg, S. (1966). High-speed scanning in human memory. Science, 153(3736), 652–654.
  • Sternberg, S. (1969). Memory-scanning: Mental processes revealed by reaction-time experiments. American Scientist, 57(4), 421–457.
  • Subramanian, M., Birnbaum, A. K., & Remmel, R. P. (2008). High-speed simultaneous determination of nine antiepileptic drugs using liquid chromatography-mass spectrometry. Therapeutic Drug Monitoring, 30(3), 347–356. doi:10.1097/FTD.0b013e3181678ecb
  • Thompson, P. J., Baxendale, S. A., Duncan, J. S., & Sander, J. (2000). Effects of topiramate on cognitive function. Journal of Neurology, Neurosurgery & Psychiatry, 69(5), 636–641.
  • Voytek, B., Davis, M., Yago, E., Barceló, F., Vogel, E. K., & Knight, R. T. (2010). Dynamic neuroplasticity after human prefrontal cortex damage. Neuron, 68(3), 401–408. doi:10.1016/j.neuron.2010.09.018
  • Wandschneider, B., Burdett, J., Townsend, L., Hill, A., Thompson, P. J., Duncan, J. S., & Koepp, M. J. (2017). Effect of topiramate and zonisamide on fMRI cognitive networks. Neurology, 88(12), 1165–1171.
  • Wang, C., Trongnetrpunya, A., Samuel, I. B. H., Ding, M., & Kluger, B. M. (2016). Compensatory neural activity in response to cognitive fatigue. Journal of Neuroscience, 36(14), 3919–3924. doi:10.1523/JNEUROSCI.3652-15.2016
  • Wobbrock, J. O., Findlater, L., Gergle, D., & Higgins, J. J. (2011). The aligned rank transform for nonparametric factorial analyses using only anova procedures. In Proceedings of the SIGCHI conference on human factors in computing systems (pp. 143–146). New York, NY: ACM.
  • Woodard, J. L., Grafton, S. T., Votaw, J. R., Green, R. C., Dobraski, M. E., & Hoffman, J. M. (1998). Compensatory recruitment of neural resources during overt rehearsal of word lists in Alzheimer’s disease. Neuropsychology, 12(4), 491.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.