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Is impulsive violence an addiction? The Habit Hypothesis

Published online by Cambridge University Press:  27 April 2015

Abstract

Impulsive violence may be the behavioral consequence of inefficient information processing within specific neuronal networks. Analogous to the hypothetical pathophysiology of addiction, maladaptations within reward pathways may shift goal-directed behaviors to impulsive reactions and then to compulsive habits, in order to create impulsive violence.

Type
Brainstorms
Copyright
© Cambridge University Press 2015 

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References

1. Nolan, KA, Czobor, P, Roy, BB, et al. Characteristics of assaultive behavior among psychiatric inpatients. Psychiatr Serv. 2003; 54(7): 10121016.Google Scholar
2. Quanbeck, CD, McDermott, BE, Lam, J, Eisenstark, H, Sokolov, G, Scott, CL. Categorization of aggressive acts committed by chronically assaultive state hospital patients. Psychiatr Serv. 2007; 58(4): 521528.Google Scholar
3. Stahl, SM. Deconstructing violence as a medical syndrome: mapping psychotic, impulsive and predatory subtypes to malfunctioning brain circuits. CNS Spectr. 2014; 19(5): 357365.Google Scholar
4. Stahl, SM, Morrissette, DA. Stahl’s Illustrated: Violence: Neural Circuits, Genetics and Treatment. Cambridge, UK: Cambridge University Press; 2014.CrossRefGoogle Scholar
5. Stahl, SM, Morrissette, DA, Cummings, M, et al. The California Department of State Hospitals Violence Assessment and Treatment (CAL-VAT) guidelines. CNS Spectr. 2014; 19(5): 449465.Google Scholar
6. Dardashti, L, O’Day, J, Barsom, M, Schwartz, E, Proctor, G. Illustrative cases to support Cal-VAT guidelines. CNS Spectr. In press. DOI: 10.1017/S1092852915000127.Google Scholar
7. Morrissette, DA, Stahl, SM. Treating the violent patient with psychosis or impulsivity utilizing antipsychotic polypharmacy and high-dose monotherapy. CNS Spectr. 2014; 19(5): 439448.Google Scholar
8. Coccaro, E, Fanning, J, Phan, KL, Lee, R. Serotonin and impulsive aggression. CNS Spectr. In press.Google Scholar
9. Rosell, D, Siever, L. The neurobiology of violence. CNS Spectr. In press.Google Scholar
10. Grant, JE, Kim, SW. Brain circuitry of compulsivity and impulsivity. CNS Spectr. 2014; 19(1): 2127.CrossRefGoogle ScholarPubMed
11. Fineberg, NA, Chamberlain, SR, Goudriaan, AE, et al. New developments in human neurocognition: clinical, genetic and brain imaging correlates of impulsivity and compulsivity. CNS Spectr. 2014; 19(1): 6989.CrossRefGoogle ScholarPubMed
12. Berlin, GS, Hollander, E. Compulsivity, impulsivity, and the DSM 5 process. CNS Spectr. 2014; 19(1): 6268.Google Scholar
13. Stahl, SM, Grady, M. Stahl’s Illustrated: Substance Use and Impulsive Disorders. Cambridge, UK: Cambridge University Press; 2012.Google Scholar
14. Everitt, BJ, Robbins, TW. Neural systems of reinforcement for drug addiction: from actions to habits to compulsion. Nat Neurosci. 2005; 8(11): 14811489.Google Scholar
15. Everitt, BJ, Robbins, TW. From ventral to dorsal striatum: devolving views of their roles in drug addiction. Neurosci Biobehav Rev. 2013; 37(9 Pt A): 19461954.Google Scholar
16. Wyvell, CL, Berridge, KC. Intra-accumbens amphetamine increases the conditioned incentive salience of sucrose reward: enhancement of reward “wanting” without enhanced “liking” or response reinforcement. J Neurosci. 2000; 20(21): 81228130.Google Scholar
17. Volkow, ND, Wang, GJ, Baler, RD. Reward, dopamine and the control of food intake: implications for obesity. Trends Cogn Sci. 2011; 15(1): 3746.Google Scholar
18. Bartholomew, N, Morgan, R. Co-morbid mental illness and criminalness: implications for housing and treatment. CNS Spectr. In press.Google Scholar
19. Felthous, A. The appropriateness of treating psychopathic disorders. CNS Spectr. In press.Google Scholar
20. Medalia, A, Opler, LA, Saperstein, AM. Integrating psychopharmacology and cognitive remediation to treat cognitive dysfunction in the psychotic disorders. CNS Spectr. 2014; 19(2): 115120.Google Scholar
21. Hooker, CI, Bruce, L, Fisher, M, Verosky, SC, Miyakawa, A, Vinogradov, S. Neural activity during emotion recognition after combined cognitive plus social cognitive training in schizophrenia. Schizophr Res. 2012; 139(1–3): 5359.Google Scholar
22. Stahl, SM. Stahl’s Essential Psychopharmacology. 4th ed. New York: Cambridge University Press; 2013.Google Scholar
23. McElroy, S, Hudson, JI, Mitchell, JE, et al. Efficacy and safety of lisdexamfetamine for treatment of adults with moderate to severe binge-eating disorder: a randomized clinical trial. JAMA Psychiatry. 2015; 72(3): 235246.Google Scholar