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Research Articles

Action control and selection in social disinhibition following severe TBI: a pavlovian-to-instrumental transfer and outcome devaluation study

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Pages 825-839 | Received 27 Jun 2023, Accepted 25 Nov 2023, Published online: 06 Feb 2024

References

  • Adams, C. D., & Dickinson, A. (1981). Instrumental responding following reinforcer devaluation. The Quarterly Journal of Experimental Psychology Section B, 33(2b), 109–121. https://doi.org/10.1080/14640748108400816
  • Alvares, G. A., Balleine, B. W., Whittle, L., & Guastella, A. J. (2016). Reduced goal-directed action control in autism spectrum disorder. Autism Research: Official Journal of the International Society for Autism Research, 9(12), 1285–1293. https://doi.org/10.1002/aur.1613
  • Antony, M. M., Bieling, P. J., Cox, B. J., Enns, M. W., & Swinson, R. P. (1998). Psychometric properties of the 42-item and 21-item versions of the depression anxiety stress scales in clinical groups and a community sample. Psychological Assessment, 10(2), 176. https://doi.org/10.1037/1040-3590.10.2.176
  • Arciniegas, D. B., & Wortzel, H. S. (2014). Emotional and behavioral dyscontrol after traumatic brain injury. The Psychiatric Clinics of North America, 37(1), 31–53. https://doi.org/10.1016/j.psc.2013.12.001
  • Bayen, E., Pradat-Diehl, P., Jourdan, C., Ghout, I., Bosserelle, V., Azerad, S., Weiss, J. J., Joel, M. E., Aegerter, P., & Azouvi, P. (2013). Predictors of informal care burden 1 year after a severe traumatic brain injury: Results from the Paris-TBI study. Journal of Head Trauma Rehabilitation, 28(6), 408–418. https://doi.org/10.1097/HTR.0b013e31825413cf
  • Beer, J. S., John, O. P., Scabini, D., & Knight, R. T. (2006). Orbitofrontal cortex and social behavior: Integrating self-monitoring and emotion-cognition interactions. Journal of Cognitive Neuroscience, 18(6), 871–879. https://doi.org/10.1162/jocn.2006.18.6.871
  • Brenner, S. L., Beauchaine, T. P., & Sylvers, P. D. (2005). A comparison of psychophysiological and self‐report measures of BAS and BIS activation. Psychophysiology, 42(1), 108–115. https://doi.org/10.1111/j.1469-8986.2005.00261.x
  • Bueno-Notivol, J., Gracia-García, P., Olaya, B., Lasheras, I., López-Antón, R., & Santabárbara, J. (2021). Prevalence of depression during the COVID-19 outbreak: A meta-analysis of community-based studies. International Journal of Clinical and Health Psychology, 21(1), 100196. https://doi.org/10.1016/j.ijchp.2020.07.007
  • Campbell-Sills, L., Liverant, G. I., & Brown, T. A. (2004). Psychometric evaluation of the behavioral inhibition/behavioral activation scales in a large sample of outpatients with anxiety and mood disorders. Psychological Assessment, 16(3), 244. https://doi.org/10.1037/1040-3590.16.3.244
  • Carver, C. S., & White, T. L. (1994). Behavioral inhibition, behavioral activation, and affective responses to impending reward and punishment: The BIS/BAS scales. Journal of Personality and Social Psychology, 67(2), 319. https://doi.org/10.1037/0022-3514.67.2.319
  • Castano Monsalve, B., Bernabeu Guitart, M., Lopez, R., Bulbena Vilasar, A., & Ignacio Quemada, J. (2012). Psychopatological evaluation of traumatic brain injury patients with the Neuropsychiatric Inventory. [Spanish] [Perfil psicopatologico de pacientes con traumatismo craneoencefalico evaluados mediante el Inventario Neuropsiquia trico.]. Revista de Psiquiatria y Salud Mental, 5(3), 160–166. https://doi.org/10.1016/j.rpsm.2012.02.004
  • Ciurli, P., Formisano, R., Bivona, U., Cantagallo, A., & Angelelli, P. (2011). Neuropsychiatric disorders in persons with severe traumatic brain injury: Prevalence, phenomenology, and relationship with demographic, clinical, and functional features [References]. The Journal of Head Trauma Rehabilitation, 26(2), 116–126. https://doi.org/10.1097/HTR.0b013e3181dedd0e
  • Corbit, L. H., & Balleine, B. W. (2005). Double dissociation of basolateral and central amygdala lesions on the general and outcome-specific forms of pavlovian-instrumental transfer. The Journal of Neuroscience: The Official Journal of the Society for Neuroscience, 25(4), 962–970. https://doi.org/10.1523/jneurosci.4507-04.2005
  • Corbit, L. H., & Balleine, B. W. (2011). The general and outcome-specific forms of Pavlovian-instrumental transfer are differentially mediated by the nucleus accumbens core and shell. Journal of Neuroscience, 31(33), 11786–11794. https://doi.org/10.1523/JNEUROSCI.2711-11.2011
  • Corbit, L. H., Janak, P. H., & Balleine, B. W. (2007). General and outcome-specific forms of Pavlovian-instrumental transfer: The effect of shifts in motivational state and inactivation of the ventral tegmental area. The European Journal of Neuroscience, 26(11), 3141–3149. https://doi.org/10.1111/j.1460-9568.2007.05934.x
  • Dewan, M. C., Rattani, A., Gupta, S., Baticulon, R. E., Hung, Y.-C., Punchak, M., Agrawal, A., Adeleye, A. O., Shrime, M. G., Rubiano, A. M., Rosenfeld, J. V., & Park, K. B. (2018). Estimating the global incidence of traumatic brain injury. Journal of Neurosurgery, 130(4), 1080. https://doi.org/10.3171/2017.10.Jns17352
  • De Wit, H. (1996). Priming effects with drugs and other reinforcers. Experimental and Clinical Psychopharmacology, 4(1), 5. https://doi.org/10.1037/1064-1297.4.1.5
  • Filipčíková, M., Wearne, T., Li, R., & McDonald, S. (2021). The prevalence, predictors, associated symptoms, and outcomes of social disinhibition following moderate-to-severe TBI: A scoping review of quantitative evidence. Journal of Clinical and Experimental Neuropsychology, 43(7), 716–736. https://doi.org/10.1080/13803395.2021.2000589
  • Franken, I. H., Muris, P., & Rassin, E. (2005). Psychometric properties of the Dutch BIS/BAS scales. Journal of Psychopathology and Behavioral Assessment, 27(1), 25–30. https://doi.org/10.1007/s10862-005-3262-2
  • Grace, J., Stout, J. C., & Malloy, P. F. (1999). Assessing frontal lobe behavioral syndromes with the frontal lobe personality scale. Assessment, 6(3), 269–284. https://doi.org/10.1177/107319119900600307
  • GraphPad Prism. (2021). (Version 9.3.1). GraphPad Software, Inc. www.graphpad.com
  • Hinojosa-Aguayo, I., & González, F. (2020). Affect-driven impulsivity impairs human action control and selection, as measured through Pavlovian instrumental transfer and outcome devaluation. The Quarterly Journal of Experimental Psychology, 73(4), 537–554. https://doi.org/10.1177/1747021819883963
  • Hogarth, L. (2012). Goal-directed and transfer-cue-elicited drug-seeking are dissociated by pharmacotherapy: Evidence for independent additive controllers. Journal of Experimental Psychology: Animal Behavior Processes, 38(3), 266. https://doi.org/10.1037/a0028914
  • Hogarth, L., & Chase, H. W. (2011). Parallel goal-directed and habitual control of human drug-seeking: Implications for dependence vulnerability. Journal of Experimental Psychology: Animal Behavior Processes, 37(3), 261. https://doi.org/10.1037/a0022913
  • Hogarth, L., & Chase, H. W. (2012). Evaluating psychological markers for human nicotine dependence: Tobacco choice, extinction, and Pavlovian-to-instrumental transfer. Experimental and Clinical Psychopharmacology, 20(3), 213. https://doi.org/10.1037/a0027203
  • Holland, P. C. (2004). Relations between pavlovian-instrumental transfer and reinforcer devaluation. Journal of Experimental Psychology: Animal Behavior Processes, 30(2), 104–117. https://doi.org/10.1037/0097-7403.30.2.104
  • IBM SPSS Statistics for Windows. In. (2021) . (Version 28). IBM Corp.
  • Kelley, E., Sullivan, C., Loughlin, J. K., Hutson, L., Dahdah, M. N., Long, M. K., Schwab, K. A., & Poole, J. H. (2014). Self-awareness and neurobehavioral outcomes, 5 years or more after moderate to severe brain injury. The Journal of Head Trauma Rehabilitation, 29(2), 147–152. https://doi.org/10.1097/HTR.0b013e31826db6b9
  • Kinsella, G., Packer, S., & Olver, J. (1991). Maternal reporting of behaviour following very severe blunt head injury. Journal of Neurology, Neurosurgery, and Psychiatry, 54(5), 422–426. https://doi.org/10.1136/jnnp.54.5.422
  • Knutson, K. M., Monte, O. D., Schintu, S., Wassermann, E. M., Raymont, V., Grafman, J., & Krueger, F. (2015). Areas of brain damage underlying increased reports of behavioral disinhibition. [Reference]. The Journal of Neuropsychiatry and Clinical Neurosciences, 27(3), 193–198. https://doi.org/10.1176/appi.neuropsych.14060126
  • Lin, L. Y., Sidani, J. E., Shensa, A., Radovic, A., Miller, E., Colditz, J. B., Hoffman, B. L., Giles, L. M., & Primack, B. A. (2016). Association between social media use and depression among US young adults. Depression and Anxiety, 33(4), 323–331. https://doi.org/10.1002/da.22466
  • Lippert-Grüner, M., Kuchta, J., Hellmich, M., & Klug, N. (2006). Neurobehavioural deficits after severe traumatic brain injury (TBI). Brain Injury, 20(6), 569–574. https://doi.org/10.1080/02699050600664467
  • Lovibond, P. F., & Lovibond, S. H. (1995). The structure of negative emotional states: Comparison of the depression anxiety stress scales (DASS) with the beck depression and anxiety inventories. Behaviour Research and Therapy, 33(3), 335–343. https://doi.org/10.1016/0005-7967(94)00075-U
  • Lovibond, P. F., Satkunarajah, M., & Colagiuri, B. (2015). Extinction can reduce the impact of reward cues on reward-seeking behavior. Behavior Therapy, 46(4), 432–438. https://doi.org/10.1016/j.beth.2015.03.005
  • Milders, M., Ietswaart, M., Crawford, J. R., & Currie, D. (2008). Social behavior following traumatic brain injury and its association with emotion recognition, understanding of intentions, and cognitive flexibility. Journal of the International Neuropsychological Society, 14(2), 318–326. https://doi.org/10.1017/S1355617708080351
  • Morris, R. W., Cyrzon, C., Green, M. J., Le Pelley, M. E., & Balleine, B. W. (2018). Impairments in action–outcome learning in schizophrenia. Translational Psychiatry, 8(1), 54. https://doi.org/10.1038/s41398-018-0103-0
  • Morris, R. W., Quail, S., Griffiths, K. R., Green, M. J., & Balleine, B. W. (2015). Corticostriatal control of goal-directed action is impaired in schizophrenia. Biological Psychiatry, 77(2), 187–195. https://doi.org/10.1016/j.biopsych.2014.06.005
  • Norman, D. A., & Shallice, T. (1986). Attention to action: Willed and automatic control of behavior. In R. J. Davidson, G. E. Schwartz, & D. Shapiro (Eds.), Consciousness and self-regulation: Advances in research and theory (Vol. 4, pp. 1–18). Springer US. https://doi.org/10.1007/978-1-4757-0629-1_1
  • Osborne-Crowley, K., & McDonald, S. (2016). Hyposmia, not emotion perception, is associated with psychosocial outcome after severe traumatic brain injury. Neuropsychology, 30(7), 820–829. https://doi.org/10.1037/neu0000293
  • Osborne-Crowley, K., McDonald, S., & Francis, H. (2016a). Development of an observational measure of social disinhibition after traumatic brain injury. Journal of Clinical and Experimental Neuropsychology, 38(3), 341–353. https://doi.org/10.1080/13803395.2015.1115824
  • Osborne-Crowley, K., McDonald, S., & Francis, H. (2016b). Development of an observational measure of social disinhibition after traumatic brain injury. Journal of Clinical and Experimental Neuropsychology, 38(3), 341–353. https://doi.org/10.1080/13803395.2015.1115824
  • Osborne-Crowley, K., McDonald, S., & Rushby, J. A. (2016). Role of reversal learning impairment in social disinhibition following severe traumatic brain injury. Journal of the International Neuropsychological Society, 22(3), 303–313. https://doi.org/10.1017/S1355617715001277
  • Peirce, J. (2019). PsychoPy - psychology software for Python, release 3.1.2.
  • Pettemeridou, E., Kennedy, M. R. T., & Constantinidou, F. (2020). Executive functions, self-awareness and quality of life in chronic moderate-to-severe TBI. NeuroRehabilitation, 46(1), 109–118. https://doi.org/10.3233/NRE-192963
  • Quail, S. L., Morris, R. W., & Balleine, B. W. (2017). Stress associated changes in Pavlovian-instrumental transfer in humans. Quarterly Journal of Experimental Psychology, 70(4), 675–685. https://doi.org/10.1080/17470218.2016.1149198
  • Reber, J., Feinstein, J. S., O’Doherty, J. P., Liljeholm, M., Adolphs, R., & Tranel, D. (2017). Selective impairment of goal-directed decision-making following lesions to the human ventromedial prefrontal cortex. Brain A Journal of Neurology, 140(6), 1743–1756. https://doi.org/10.1093/brain/awx105
  • Reitan, R. M. (1992). Trail making test. Reitan Neuropsychology Laboratory.
  • Ruff, R. M., Light, R. H., Parker, S. B., & Levin, H. S. (1996). Benton controlled oral word association test: Reliability and updated norms. Archives of Clinical Neuropsychology, 11(4), 329–338. https://doi.org/10.1093/arclin/11.4.329
  • Russell, W. R., & Smith, A. (1961). Post-traumatic amnesia in closed head injury. Archives of Neurology, 5(1), 4–17. https://doi.org/10.1001/archneur.1961.00450130006002
  • Schneider, W., & Shiffrin, R. M. (1977). Controlled and automatic human information processing: I. Detection, search, and attention. Psychological Review, 84(1), 1–66. https://doi.org/10.1037/0033-295X.84.1.1
  • Seabrooke, T., Hogarth, L., Edmunds, C. E., & Mitchell, C. J. (2019). Goal-directed control in Pavlovian-instrumental transfer. Journal of Experimental Psychology: Animal Learning and Cognition, 45(1), 95. https://doi.org/10.1037/xan0000191
  • Seabrooke, T., Hogarth, L., & Mitchell, C. J. (2016). The propositional basis of cue-controlled reward seeking. Quarterly Journal of Experimental Psychology, 69(12), 2452–2470. https://doi.org/10.1080/17470218.2015.1115885
  • Shensa, A., Sidani, J. E., Dew, M. A., Escobar-Viera, C. G., & Primack, B. A. (2018). Social media use and depression and anxiety symptoms: A cluster analysis. American Journal of Health Behavior, 42(2), 116–128. https://doi.org/10.5993/AJHB.42.2.11
  • Smith, A. (2002). Symbol digit modalities test: Manual: Western psychological corporation. PMID.
  • Spreen, O., & Strauss, E. (1998). A compendium of neuropsychological tests (2nd ed.). Oxford University Press [Google Scholar].
  • Stanton, R., To, Q. G., Khalesi, S., Williams, S. L., Alley, S. J., Thwaite, T. L., Fenning, A. S., & Vandelanotte, C. (2020). Depression, anxiety and stress during COVID-19: Associations with changes in physical activity, sleep, tobacco and alcohol use in Australian adults. International Journal of Environmental Research and Public Health, 17(11), 4065. https://doi.org/10.3390/ijerph17114065
  • Stout, J. C., Ready, R. E., Grace, J., Malloy, P. F., & Paulsen, J. S. (2003). Factor analysis of the frontal systems behavior scale (FrSbe). Assessment, 10(1), 79–85. https://doi.org/10.1177/1073191102250339
  • Tate, R., Fenelon, B., Manning, M., & Hunter, M. (1991). Patterns of neuropsychological impairment after severe blunt head injury. The Journal of Nervous and Mental Disease, 179(3), 117–126. https://doi.org/10.1097/00005053-199103000-00001
  • Teasdale, G., & Jennett, B. (1974). Assessment of coma and impaired consciousness: A practical scale. The Lancet, 304(7872), 81–84. https://doi.org/10.1016/S0140-6736(74)91639-0
  • Tulving, E., & Schacter, D. L. (1990). Priming and human memory systems. Science, 247(4940), 301–306. https://doi.org/10.1126/science.2296719
  • van Steenbergen, H., Watson, P., Wiers, R. W., Hommel, B., & de Wit, S. (2017). Dissociable corticostriatal circuits underlie goal-directed vs. cue-elicited habitual food seeking after satiation: Evidence from a multimodal MRI study. European Journal of Neuroscience, 46(2), 1815–1827. https://doi.org/10.1111/ejn.13586
  • van Timmeren, T., Quail, S. L., Balleine, B. W., Geurts, D. E. M., Goudriaan, A. E., & van Holst, R. J. (2020). Intact corticostriatal control of goal-directed action in alcohol use disorder: A pavlovian-to-instrumental transfer and outcome-devaluation study. Scientific Reports, 10(1), 4949. https://doi.org/10.1038/s41598-020-61892-5
  • Velligan, D. I., Ritch, J. L., Sui, D., DiCocco, M., & Huntzinger, C. D. (2002). Frontal systems behavior scale in schizophrenia: Relationships with psychiatric symptomatology, cognition and adaptive function. Psychiatry Research, 113(3), 227–236. https://doi.org/10.1016/S0165-1781(02)00264-0
  • Watson, P., & de Wit, S. (2018). Current limits of experimental research into habits and future directions. Current Opinion in Behavioral Sciences, 20, 33–39. https://doi.org/10.1016/j.cobeha.2017.09.012
  • Watson, P., Wiers, R. W., Hommel, B., & de Wit, S. (2014). Working for food you don’t desire. Cues interfere with goal-directed food-seeking. Appetite, 79, 139–148. https://doi.org/10.1016/j.appet.2014.04.005
  • Watson, P., Wiers, R. W., Hommel, B., & de Wit, S. (2018). Motivational sensitivity of outcome-response priming: Experimental research and theoretical models. Psychonomic Bulletin & Review, 25(6), 2069–2082. https://doi.org/10.3758/s13423-018-1449-2
  • Watson, P., Wiers, R. W., Hommel, B., Ridderinkhof, K. R., & de Wit, S. (2016). An associative account of how the obesogenic environment biases adolescents’ food choices. Appetite, 96, 560–571. https://doi.org/10.1016/j.appet.2015.10.008
  • Wearne, T. A., Osborne-Crowley, K., Logan, J. A., Wilson, E., Rushby, J., & McDonald, S. (2020). Understanding how others feel: Evaluating the relationship between empathy and various aspects of emotion recognition following severe traumatic brain injury. Neuropsychology, 34(3), 288. https://doi.org/10.1037/neu0000609
  • Wearne, T., Osborne-Crowley, K., Rosenberg, H., Dethier, M., & McDonald, S. (2019). Emotion recognition depends on subjective emotional experience and not on facial expressivity: Evidence from traumatic brain injury. Brain Injury, 33(1), 12–22. https://doi.org/10.1080/02699052.2018.1531300
  • Weber, E., Spirou, A., Chiaravalloti, N., & Lengenfelder, J. (2018). Impact of frontal neurobehavioral symptoms on employment in individuals with TBI [Reference]. Rehabilitation Psychology, 63(3), 383–391. https://doi.org/10.1037/rep0000208
  • Wechsler, D. (2008). Wechsler adult intelligence scale–fourth edition (WAIS–IV). San Antonio, TX: NCS Pearson, 22(498), 816–827.
  • Wegmann, E., Müller, S. M., Turel, O., & Brand, M. (2020). Interactions of impulsivity, general executive functions, and specific inhibitory control explain symptoms of social-networks-use disorder: An experimental study. Scientific Reports, 10(1), 3866. https://doi.org/10.1038/s41598-020-60819-4
  • Wong, S., Balleine, B. W., & Kumfor, F. (2018). A new framework for conceptualizing symptoms in frontotemporal dementia: from animal models to the clinic. Brain A Journal of Neurology, 141(8), 2245–2254. https://doi.org/10.1093/brain/awy123
  • Wong, C. G., Rapport, L. J., Meachen, S.-J., Hanks, R. A., & Lumley, M. A. (2016). Behavioral inhibition and activation systems in traumatic brain injury. Rehabilitation Psychology, 61(4), 397. https://doi.org/10.1037/rep0000109
  • Wood, W., & Rünger, D. (2016). Psychology of habit. Annual Review of Psychology, 67(1), 289–314. https://doi.org/10.1146/annurev-psych-122414-033417

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