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  DOI Prefix   10.20431


 

ARC Journal of Psychiatry
Volume-1 Issue-1, 2016, Page No: 1-2

Internet Addiction

Merve Cıkili Uytun

MD specialist, Kayseri Training and Research Hospital, Department of Child and Adolescent Psychiatry, Kayseri, Turkey

Citation : Merve CU. Internet Addiction. ARC Journal of Psychiatry. 2016;1(1):1–2.

Copyright : © 2016 Merve CU. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.


1.Introduction


With the introduction of new technologies, computer and internet use have become an unavoidable necessity in our daily lives. Internet was originally designed to facilitate communication and research. However the dramatic increase in use of internet in recent years has led to its pathologic use. In the past decade, research has incerased suggesting that excessive Internet use can lead to the development of a behavioral addiction. Internet addiction (IA) has been considered as a serious threat to mental health and the excessive use of the Internet has been linked to a variety of negative psychosocial consequences [1]. Although in DSM-V, there is not a category such as internet addiction, internet gaming addcition has been included in the appendix of the DSM-V, with a goal of encouraging [2]. Recently, there has been increasing interest in investigating the neurobiological mechanisms of IA using neuroimaging. Neuroimaging studies offer an advantage because with this method, it is possible to distinguish particular brain areas that are involved in the development of addiction. Understanding the neural basis of poor impulse control in IA is important for understanding the neurobiological mechanisms of this syndrome, because IA is growing both in prevalence and within the public consciousness as a potentially problematic disorder.


2. Results and Discussion


Altered activity in brain areas associated with reward, motivation, memory, and cognitive control has been associated with addiction. These neuroımaging studies have revealed lower gray matter density [3], reduced orbitofrontal cortical, thickness [4], abnormal white matter fractional anisotropy (FA) [5], impaired brain activity [6,7], and decreased functional connectivity [8] in individuals with IA. Most of the previous literatures have studied IA individuals only under resting state, verified structural and functional abnormalities in the OFC, dorsolateral PFC, ACC, and PCC. Those regions may play crucial roles in salience attribution, inhibitory control, and decision making. the neuroimaging findings suggested that the IA shared the similar neurobiological mechanisms of substance addiction and behavioral addiction [9].


3. Conclusion


In conclusion, understanding the neuronal correlates associated with the development of Internet and playing online games addiction, will promote future research and development of addiction treatment approaches. In terms of clinical practice, increasing our knowledge about the pathogenesis of Internet and gaming addiction is essential for the development of effective treatments. These include psychopharmacological approaches that target Internet and gaming addiction specifically on the level of biochemistry and neurocircuitry, as well as psychological strategies, that aim to modify learned maladaptive cognitive and behavioral patterns. Longitudinal design and multiple imaging techniques with behavioral measurements should be necessary to improve our understanding of IA.


References


  1. Kuss DJ., Griffiths MD., Internet and Gaming Addiction: A Systematic Literature Review of Neuroimaging Studies, Brain Sci. 2, Pp 347-374, (2012).
  2. American Psychiatric Association, Diagnostic and Statistical Manual of Mental Disorders, 5th ed. Arlington, Washington DC, (2013).
  3. Zhou Y. et al., Gray matter abnormalities in Internet addiction: a voxel-based morphometry study, Eur J Radiol. 79, Pp 92–95, (20411).
  4. Hong SB et al., Reduced orbitofrontal cortical thickness in male adolescents with internet addiction. Behav Brain Funct 9, Pp 11, (2013).
  5. Yuan K et al., Microstructure abnormalities in adolescents with internet addiction disorder. PLoS One. 6, e20708 (2011).
  6. Dong G., Zhou H., Zhao X., Impulse inhibition in people with Internet addiction disorder: electrophysiological evidence from a Go/NoGo study, Neurosci Lett. 485, Pp 138–142, (2010).
  7. Dong G., Devito EE., Du X., Cui Z., Impaired inhibitory control in ‘internet addiction disorder’: a functional magnetic resonance imaging study, Psychiatry Res. 203, Pp 153–158, (2012).
  8. Hong SB. et al., Decreased functional brain connectivity in adolescents with internet addiction, PLoS One. 8, e57831, (2013).
  9. Zhu Y., Zhang H., Tian M., Molecular and Functional Imaging of Internet Addiction. BioMed Research International. Pp 1-9, (2015).