全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

探寻攻击行为的神经标志物:来自P300的证据
Exploring the Neural Markers of Aggressive Behavior: Evidence from P300

DOI: 10.12677/ap.2024.148563, PP. 410-422

Keywords: P300,攻击行为,临床群体,犯罪群体
P300
, Aggressive Behavior, Clinical Groups, Criminal Groups

Full-Text   Cite this paper   Add to My Lib

Abstract:

攻击行为正逐渐上升为一个突出的公共卫生问题,是否能够寻找到攻击性行为的神经标志物,成为了心理学家和神经科学家的共同关注目标。P300被认为可作为独立指标有效预测攻击性行为。本文分别介绍了P300在临床群体、犯罪群体和非临床暴力风险群体的攻击性行为测量中的应用,评估了研究结果的一致性,并从P300指标的多角度分析及与其他ERP成分的结合、对犯罪群体进行进一步的类型细分、P300的应用场景拓展(如监内暴力预测、暴力行为干预效果评估和正常人攻击风险测量)等三个方面对未来的研究方向进行了展望。
Aggressive behavior is gradually emerging as a prominent public health problem. Finding neural markers for aggressive behavior has become a common focus for psychologists and neuroscientists. The P300 is considered to be an independent indicator that can effectively predict aggressive behavior. This article introduces the application of P300 in the measurement of aggressive behavior in clinical, criminal and non-clinical violence risk groups, evaluates the consistency of research results, and looks forward to future research directions from three perspectives: multi-dimensional analysis of P300 predictors and combination with other ERP components, further subdivision of criminal groups, and expansion of the application scenarios of P300 (such as the prediction of violence in prison, the evaluation of the effectiveness of violence intervention and the measurement of the risk of aggression in normal people).

References

[1]  李丹玉(2021). P300预警精神分裂症患者暴力行为的应用评价研究. 硕士学位论文, 石河子: 石河子大学.
[2]  李昕雨(2023). 冲动性暴力犯与非暴力犯在道德愤怒与个人愤怒下的行为抑制能力的研究. 硕士学位论文, 天津: 天津师范大学.
[3]  刘宇平, 赵辉, 李姗珊, 张卓, 杨波(2019). 反社会人格障碍的神经生物学基础及其司法启示. 心理科学进展, 27(10), 1726-1742.
[4]  唐敏, 黄银秋(2022). 精神分裂症患者暴力风险与P300的潜伏期、波幅及静息脑区自发神经活动的关系. 慢性病学杂志, 23(10), 1548-1553.
[5]  魏景汉, 罗跃嘉(2010). 事件相关电位原理与技术. 北京: 科学出版社.
[6]  毋嫘, 赵晨光, 陈瀚强, 刘天骄, 康威, 李昕雨(2022). 愤怒诱发冲动性暴力犯行为抑制晚期阶段: 来自ERP的证据. 心理与行为研究, 20(6), 842-849.
[7]  徐佳兵, 杨岭, 周旭辉(2018). 伴攻击行为酒精依赖者认知功能与P300的相关性研究. 中国药物依赖性杂志, 27(6), 416-420.
[8]  张维(2015). 刑法中的暴力行为研究. 硕士学位论文, 重庆: 西南政法大学.
[9]  张卓(2022). 中国暴力犯罪人的心理与行为研究. 中国政法大学出版社.
[10]  赵丁, 张杨骏, 纪家武(2024). 精神分裂症暴力攻击行为与P300成分的相关性研究. 中国卫生标准管理, 15(1), 128-132.
[11]  赵红岩, 施春阳, 王奇, 黄鸿飞, 侯雨(2022). V-RISK-10联合P300检测预测精神分裂症患者暴力行为的价值研究. 精神医学杂志, 35(5), 409-414.
[12]  Allen, J. J., & Anderson, C. A. (2017). Aggression and Violence: Definitions and Distinctions. In P. Sturmey (Ed.), The Wiley Handbook of Violence and Aggression. John Wiley & Sons.
https://doi.org/10.1002/9781119057574.whbva001
[13]  Arıkan, M. K., İlhan, R., Orhan, Ö., Esmeray, M. T., Turan, Ş., Gica, Ş. et al. (2024). P300 Parameters in Major Depressive Disorder: A Systematic Review and Meta-Analysis. The World Journal of Biological Psychiatry, 25, 255-266.
https://doi.org/10.1080/15622975.2024.2321554
[14]  Arzi, A., Rozenkrantz, L., Gorodisky, L., Rozenkrantz, D., Holtzman, Y., Ravia, A. et al. (2020). Olfactory Sniffing Signals Consciousness in Unresponsive Patients with Brain Injuries. Nature, 581, 428-433.
https://doi.org/10.1038/s41586-020-2245-5
[15]  Barratt, E. S., Stanford, M. S., Kent, T. A., & Alan, F. (1997). Neuropsychological and Cognitive Psychophysiological Substrates of Impulsive Aggression. Biological Psychiatry, 41, 1045-1061.
https://doi.org/10.1016/s0006-3223(96)00175-8
[16]  Bauer, L. O. (2021). Temporal Instability in Brain Activation: A Novel Paradigm for Evaluating the Maintenance of Attention among Substance Dependent Patients. Psychopharmacology, 238, 2937-2946.
https://doi.org/10.1007/s00213-021-05909-5
[17]  Bauer, L. O., & Hesselbrock, V. M. (1999a). P300 Decrements in Teenagers with Conduct Problems: Implications for Substance Abuse Risk and Brain Development. Biological Psychiatry, 46, 263-272.
https://doi.org/10.1016/s0006-3223(98)00335-7
[18]  Bauer, L. O., & Hesselbrock, V. M. (1999b). Subtypes of Family History and Conduct Disorder Effects on P300 during the Stroop Test. Neuropsychopharmacology, 21, 51-62.
https://doi.org/10.1016/s0893-133x(98)00139-0
[19]  Bauer, L. O., & Hesselbrock, V. M. (2003). Brain Maturation and Subtypes of Conduct Disorder: Interactive Effects on P300 Amplitude and Topography in Male Adolescents. Journal of the American Academy of Child & Adolescent Psychiatry, 42, 106-115.
https://doi.org/10.1097/00004583-200301000-00017
[20]  Bauer, L. O., O’Connor, S., & Hesselbrock, V. M. (1994). Frontal P300 Decrements in Antisocial Personality Disorder. Alcoholism: Clinical and Experimental Research, 18, 1300-1305.
https://doi.org/10.1111/j.1530-0277.1994.tb01427.x
[21]  Bel-Bahar, T. S., Khan, A. A., Shaik, R. B., & Parvaz, M. A. (2022). A Scoping Review of Electroencephalographic (EEG) Markers for Tracking Neurophysiological Changes and Predicting Outcomes in Substance Use Disorder Treatment. Frontiers in Human Neuroscience, 16, Article 995534.
https://doi.org/10.3389/fnhum.2022.995534
[22]  Bernat, E. M., Ellis, J. S., Bachman, M. D., & Hicks, B. M. (2020). P3 Amplitude Reductions Are Associated with Shared Variance between Internalizing and Externalizing Psychopathology. Psychophysiology, 57, e13618.
https://doi.org/10.1111/psyp.13618
[23]  Bernat, E. M., Hall, J. R., Steffen, B. V., & Patrick, C. J. (2007). Violent Offending Predicts P300 Amplitude. International Journal of Psychophysiology, 66, 161-167.
[24]  Black, D. W. (2015). The Natural History of Antisocial Personality Disorder. The Canadian Journal of Psychiatry, 60, 309-314.
https://doi.org/10.1177/070674371506000703
[25]  Blignaut, J., & Vandenheever, D. (2022). Prevalence of a Late Readiness Potential during a Deliberate Decision-Making Task. BRAIN. Broad Research in Artificial Intelligence and Neuroscience, 13, 382-402.
https://doi.org/10.18662/brain/13.2/349
[26]  Bochkarev, V. K., Solnceva, S. V., Kirenskaya, A. V., & Tkachenko, A. A. (2020). A Comparative Study of the P300 Wave and Evoked Theta-Rhythm in Schizophrenia and Personality Disorders. S.S. Korsakov Journal of Neurology and Psychiatry, 120, 41-47.
https://doi.org/10.17116/jnevro202012003141
[27]  Branchey, M. H., Buydens-Branchey, L., & Lieber, C. S. (1988). P3 in Alcoholics with Disordered Regulation of Aggression. Psychiatry Research, 25, 49-58.
https://doi.org/10.1016/0165-1781(88)90157-6
[28]  Brislin, S. J., Salvatore, J. E., Meyers, J. M., Kamarajan, C., Plawecki, M. H., Edenberg, H. J. et al. (2023). Examining Associations between Genetic and Neural Risk for Externalizing Behaviors in Adolescence and Early Adulthood. Psychological Medicine, 54, 267-277.
https://doi.org/10.1017/s0033291723001174
[29]  Bushman, B. J., & Anderson, C. A. (2001). Is It Time to Pull the Plug on Hostile versus Instrumental Aggression Dichotomy? Psychological Review, 108, 273-279.
https://doi.org/10.1037//0033-295x.108.1.273
[30]  Cleckley, H. M. (1951). The Mask of Sanity. Postgraduate Medicine, 9, 193-197.
https://doi.org/10.1080/00325481.1951.11694097
[31]  Convit, A., Czobor, P., & Volavka, J. (1991). Lateralized Abnormality in the EEG of Persistently Violent Psychiatric Inpatients. Biological Psychiatry, 30, 363-370.
https://doi.org/10.1016/0006-3223(91)90292-t
[32]  Coppens, C. M., Coolen, A., de Boer, S. F., & Koolhaas, J. M. (2014). Adolescent Social Defeat Disturbs Adult Aggression-Related Impulsivity in Wild-Type Rats. Behavioural Processes, 108, 191-196.
https://doi.org/10.1016/j.beproc.2014.10.013
[33]  Costa, L., Bauer, L., Kuperman, S., Porjesz, B., O’Connor, S., Hesselbrock, V. et al. (2000). Frontal P300 Decrements, Alcohol Dependence, and Antisocial Personality Disorder. Biological Psychiatry, 47, 1064-1071.
https://doi.org/10.1016/s0006-3223(99)00317-0
[34]  Crago, R. V., Renoult, L., Biggart, L., Nobes, G., Satmarean, T., & Bowler, J. O. (2019). Physical Aggression and Attentional Bias to Angry Faces: An Event Related Potential Study. Brain Research, 1723, Article ID: 146387.
https://doi.org/10.1016/j.brainres.2019.146387
[35]  Degenhardt, L., Charlson, F., Ferrari, A., Santomauro, D., Erskine, H., Mantilla-Herrara, A. et al. (2018). The Global Burden of Disease Attributable to Alcohol and Drug Use in 195 Countries and Territories, 1990-2016: A Systematic Analysis for the Global Burden of Disease Study 2016. The Lancet Psychiatry, 5, 987-1012.
https://doi.org/10.1016/s2215-0366(18)30337-7
[36]  Delfin, C., Ruzich, E., Wallinius, M., Björnsdotter, M., & Andiné, P. (2020). Trait Disinhibition and NoGo Event-Related Potentials in Violent Mentally Disordered Offenders and Healthy Controls. Frontiers in Psychiatry, 11, Article 577491.
https://doi.org/10.3389/fpsyt.2020.577491
[37]  Delfin, C., Wallinius, M., Björnsdotter, M., Ruzich, E., & Andiné, P. (2022). Prolonged NoGo P3 Latency as a Possible Neurobehavioral Correlate of Aggressive and Antisocial Behaviors: A Go/NoGo ERP Study. Biological Psychology, 168, Article ID: 108245.
https://doi.org/10.1016/j.biopsycho.2021.108245
[38]  Elsheikh, M. (2020). Study of Attention Measured by Event-Related Potential as a Predictive Factor of Violence among Patients with Schizophrenia and Substance Use Disorder. Middle East Current Psychiatry, 27, Article No. 17.
https://doi.org/10.1186/s43045-020-00024-1
[39]  Fanning, J. R., Berman, M. E., & Long, J. M. (2014). P3 and Provoked Aggressive Behavior. Social Neuroscience, 9, 118-129.
https://doi.org/10.1080/17470919.2013.866596
[40]  Fido, D., Santo, M. G. E., Bloxsom, C. A. J., Gregson, M., & Sumich, A. L. (2017). Electrophysiological Study of the Violence Inhibition Mechanism in Relation to Callous-Unemotional and Aggressive Traits. Personality and Individual Differences, 118, 44-49.
https://doi.org/10.1016/j.paid.2017.01.049
[41]  Finger, E. C., Marsh, A. A., Blair, K. S., Reid, M. E., Sims, C., Ng, P. et al. (2011). Disrupted Reinforcement Signaling in the Orbitofrontal Cortex and Caudate in Youths with Conduct Disorder or Oppositional Defiant Disorder and a High Level of Psychopathic Traits. American Journal of Psychiatry, 168, 152-162.
https://doi.org/10.1176/appi.ajp.2010.10010129
[42]  Gao, Y., & Raine, A. (2009). P3 Event-Related Potential Impairments in Antisocial and Psychopathic Individuals: A Meta-Analysis. Biological Psychology, 82, 199-210.
https://doi.org/10.1016/j.biopsycho.2009.06.006
[43]  García-Gutiérrez, M. S., Navarrete, F., Sala, F., Gasparyan, A., Austrich-Olivares, A., & Manzanares, J. (2020). Biomarkers in Psychiatry: Concept, Definition, Types and Relevance to the Clinical Reality. Frontiers in Psychiatry, 11, Article 432.
https://doi.org/10.3389/fpsyt.2020.00432
[44]  Gerstle, J. E., Mathias, C. W., & Stanford, M. S. (1998). Auditory P300 and Self-Reported Impulsive Aggression. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 22, 575-583.
https://doi.org/10.1016/s0278-5846(98)00027-x
[45]  Harmon-Jones, E., & Sigelman, J. (2001). State Anger and Prefrontal Brain Activity: Evidence That Insult-Related Relative Left-Prefrontal Activation Is Associated with Experienced Anger and Aggression. Journal of Personality and Social Psychology, 80, 797-803.
https://doi.org/10.1037/0022-3514.80.5.797
[46]  Harmon-Jones, E., Barratt, E. S., & Wigg, C. (1997). Impulsiveness, Aggression, Reading, and the P300 of the Event-Related Potential. Personality and Individual Differences, 22, 439-445.
https://doi.org/10.1016/s0191-8869(96)00235-8
[47]  Hecht, L. K., & Latzman, R. D. (2018). Exploring the Differential Associations between Components of Executive Functioning and Reactive and Proactive Aggression. Journal of Clinical and Experimental Neuropsychology, 40, 62-74.
https://doi.org/10.1080/13803395.2017.1314450
[48]  Herzog, N. D., Steinfath, T. P., & Tarrasch, R. (2021). Critical Dynamics in Spontaneous Resting-State Oscillations Are Associated with the Attention-Related P300 ERP in a Go/NoGo Task. Frontiers in Neuroscience, 15, Article 632922.
https://doi.org/10.3389/fnins.2021.632922
[49]  Hoptman, M. J. (2015). Impulsivity and Aggression in Schizophrenia: A Neural Circuitry Perspective with Implications for Treatment. CNS Spectrums, 20, 280-286.
https://doi.org/10.1017/s1092852915000206
[50]  Iacono, W. G., Carlson, S. R., Malone, S. M., & McGue, M. (2002). P3 Event-Related Potential Amplitude and the Risk for Disinhibitory Disorders in Adolescent Boys. Archives of General Psychiatry, 59, 750-757.
https://doi.org/10.1001/archpsyc.59.8.750
[51]  Irak, M., Soylu, C., & Tümen, C. (2021). Effects of Excessive Violent Video Game Playing on Verbal Memory: An Event-Related Brain Potentials Study. Cognitive Processing, 22, 487-500.
https://doi.org/10.1007/s10339-021-01018-5
[52]  Key, A. P., Thornton-Wells, T. A., & Smith, D. G. (2023). Electrophysiological Biomarkers and Age Characterize Phenotypic Heterogeneity among Individuals with Major Depressive Disorder. Frontiers in Human Neuroscience, 16, Article 1055385.
https://doi.org/10.3389/fnhum.2022.1055685
[53]  Khosravani, V., Sharifibastan, F., Aghaeimazraji, M., Berk, M., & Samimi Ardestani, S. M. (2024). The Contribution of Alexithymia, Childhood Maltreatment, Impulsivity, C-Reactive Protein, Lipid Profile, and Thyroid Hormones to Aggression and Psychological Distress (Depression and Anxiety) in Schizophrenia. Psychoneuroendocrinology, 167, Article ID: 107087.
https://doi.org/10.1016/j.psyneuen.2024.107087
[54]  Klein Tuente, S., Bogaerts, S., & Veling, W. (2019). Hostile Attribution Bias and Aggression in Adults—A Systematic Review. Aggression and Violent Behavior, 46, 66-81.
https://doi.org/10.1016/j.avb.2019.01.009
[55]  Koelsch, S. (2009). P3a and Mismatch Negativity in Individuals with Moderate Intermittent Explosive Disorder. Neuroscience Letters, 460, 21-26.
https://doi.org/10.1016/j.neulet.2009.05.047
[56]  Krakowski, M. I., De Sanctis, P., Foxe, J. J., Hoptman, M. J., Nolan, K., Kamiel, S. et al. (2016). Disturbances in Response Inhibition and Emotional Processing as Potential Pathways to Violence in Schizophrenia: A High-Density Event-Related Potential Study. Schizophrenia Bulletin, 42, 963-974.
https://doi.org/10.1093/schbul/sbw005
[57]  Krämer, U. M., Büttner, S., Roth, G., & Münte, T. F. (2008). Trait Aggressiveness Modulates Neurophysiological Correlates of Laboratory-Induced Reactive Aggression in Humans. Journal of Cognitive Neuroscience, 20, 1464-1477.
https://doi.org/10.1162/jocn.2008.20103
[58]  Krueger, R. F., Hicks, B. M., Patrick, C. J., Carlson, S. R., Iacono, W. G., & McGue, M. (2002). Etiologic Connections among Substance Dependence, Antisocial Behavior and Personality: Modeling the Externalizing Spectrum. Journal of Abnormal Psychology, 111, 411-424.
https://doi.org/10.1037/0021-843x.111.3.411
[59]  Krueger, R. F., Hobbs, K. A., Conway, C. C., Dick, D. M., Dretsch, M. N., Eaton, N. R. et al. (2021). Validity and Utility of Hierarchical Taxonomy of Psychopathology (HiTOP): II. Externalizing Superspectrum. World Psychiatry, 20, 171-193.
https://doi.org/10.1002/wps.20844
[60]  Kunaharan, S., Halpin, S., Sitharthan, T., & Walla, P. (2019). Do EEG and Startle Reflex Modulation Vary with Self-Reported Aggression in Response to Violent Images? Brain Sciences, 9, Article 298.
https://doi.org/10.3390/brainsci9110298
[61]  Lahnakoski, J. M., Eickhoff, S. B., Dukart, J., & Schilbach, L. (2022). Naturalizing Psychopathology—Towards a Quantitative Real-World Psychiatry. Molecular Psychiatry, 27, 781-783.
https://doi.org/10.1038/s41380-021-01322-8
[62]  Lansbergen, M. M., Böcker, K. B. E., Bekker, E. M., & Kenemans, J. L. (2007). Neural Correlates of Stopping and Self-Reported Impulsivity. Clinical Neurophysiology, 118, 2089-2103.
https://doi.org/10.1016/j.clinph.2007.06.011
[63]  Li, Y. Q., Pan, J. H., Wang, F., & Yu, Z. L. (2013). A Hybrid BCI System Combining P300 and SSVEP and Its Application to Wheelchair Control. IEEE Transactions on Biomedical Engineering, 60, 3156-3166.
https://doi.org/10.1109/tbme.2013.2270283
[64]  Lievaart, M., van der Veen, F. M., Huijding, J., Naeije, L., Hovens, J. E., & Franken, I. H. A. (2016). Trait Anger in Relation to Neural and Behavioral Correlates of Response Inhibition and Error-Processing. International Journal of Psychophysiology, 99, 40-47.
https://doi.org/10.1016/j.ijpsycho.2015.12.001
[65]  Lijffijt, M., Cox, B., Acas, M. D., Lane, S. D., Moeller, F. G., & Swann, A. C. (2012). Differential Relationships of Impulsivity or Antisocial Symptoms on P50, N100, or P200 Auditory Sensory Gating in Controls and Antisocial Personality Disorder. Journal of Psychiatric Research, 46, 743-750.
https://doi.org/10.1016/j.jpsychires.2012.03.001
[66]  Luijten, M., van Meel, C. S., & Franken, I. H. A. (2011). Diminished Error Processing in Smokers during Smoking Cue Exposure. Pharmacology Biochemistry and Behavior, 97, 514-520.
https://doi.org/10.1016/j.pbb.2010.10.012
[67]  Mathias, C. W., & Stanford, M. S. (1999). P300 under Standard and Surprise Conditions in Self-Reported Impulsive Aggression. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 23, 1037-1051.
https://doi.org/10.1016/s0278-5846(99)00053-6
[68]  Niculescu, A. B., & Le-Niculescu, H. (2022). Precision Medicine in Psychiatry: Biomarkers to the Forefront. Neuropsychopharmacology, 47, 422-423.
https://doi.org/10.1038/s41386-021-01183-3
[69]  O’Connor, S., Bauer, L., Tasman, A., & Hesselbrock, V. (1994). Reduced P3 Amplitudes Are Associated with Both a Family History of Alcoholism and Antisocial Personality Disorder. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 18, 1307-1321.
https://doi.org/10.1016/0278-5846(94)90095-7
[70]  Olichney, J., Xia, J., Church, K. J., & Moebius, H. J. (2022). Predictive Power of Cognitive Biomarkers in Neurodegenerative Disease Drug Development: Utility of the P300 Event-Related Potential. Neural Plasticity, 2022, Article ID: 2104880.
https://doi.org/10.1155/2022/2104880
[71]  Olvet, D., & Hajcak, G. (2008). The Error-Related Negativity (ERN) and Psychopathology: Toward an Endophenotype. Clinical Psychology Review, 28, 1343-1354.
https://doi.org/10.1016/j.cpr.2008.07.003
[72]  Pasion, R., Fernandes, C., Pereira, M. R., & Barbosa, F. (2018). Antisocial Behaviour and Psychopathy: Uncovering the Externalizing Link in the P3 Modulation. Neuroscience & Biobehavioral Reviews, 91, 170-186.
https://doi.org/10.1016/j.neubiorev.2017.03.012
[73]  Pasion, R., Ribes-Guardiola, P., Patrick, C., Stewart, R. A., Paiva, T. O., Macedo, I. et al. (2023). Modeling Relations between Event-Related Potential Factors and Broader versus Narrower Dimensions of Externalizing Psychopathology. Journal of Psychopathology and Clinical Science, 132, 867-880.
https://doi.org/10.1037/abn0000856
[74]  Patrick, C. J. (2008). Psychophysiological Correlates of Aggression and Violence: An Integrative Review. Philosophical Transactions of the Royal Society B: Biological Sciences, 363, 2543-2555.
https://doi.org/10.1098/rstb.2008.0028
[75]  Patrick, C. J., Bernat, E. M., Malone, S. M., Iacono, W. G., Krueger, R. F., & McGue, M. (2006). P300 Amplitude as an Indicator of Externalizing in Adolescent Males. Psychophysiology, 43, 84-92.
https://doi.org/10.1111/j.1469-8986.2006.00376.x
[76]  Patrick, C. J., Fowles, D. C., & Krueger, R. F. (2009). Triarchic Conceptualization of Psychopathy: Developmental Origins of Disinhibition, Boldness, and Meanness. Development and Psychopathology, 21, 913-938.
https://doi.org/10.1017/s0954579409000492
[77]  Paulhus, D. L., Curtis, S. R., & Jones, D. N. (2018). Aggression as a Trait: The Dark Tetrad Alternative. Current Opinion in Psychology, 19, 88-92.
https://doi.org/10.1016/j.copsyc.2017.04.007
[78]  Peng, M., Wang, X., Chen, W., Chen, T., Cai, M., Sun, X. et al. (2021). Cooperate or Aggress? An Opponent’s Tendency to Cooperate Modulates the Neural Dynamics of Interpersonal Cooperation. Neuropsychologia, 162, Article ID: 108025.
https://doi.org/10.1016/j.neuropsychologia.2021.108025
[79]  Pérez Fuentes, M. D. C., Molero Jurado, M. D. M., Carrión Martínez, J. J., Mercader Rubio, I., & Gázquez, J. J. (2016). Sensation-Seeking and Impulsivity as Predictors of Reactive and Proactive Aggression in Adolescents. Frontiers in Psychology, 7, Article 1447.
https://doi.org/10.3389/fpsyg.2016.01447
[80]  Peterson, C., Li, M., Xu, L., Mikosz, C. A., & Luo, F. (2021). Assessment of Annual Cost of Substance Use Disorder in US Hospitals. JAMA Network Open, 4, e210242.
https://doi.org/10.1001/jamanetworkopen.2021.0242
[81]  Pincham, H. L., Bryce, D., Fonagy, P., & Fearon, R. M. P. (2019). Psychosocial Intervention in At-Risk Adolescents: Using Event-Related Potentials to Assess Changes in Decision Making and Feedback Processing. European Child & Adolescent Psychiatry, 28, 223-236.
https://doi.org/10.1007/s00787-018-1167-3
[82]  Prata, C., Pasion, R., Fernandes, M., Almeida, R., Pereira, M. R., Mazer, P. et al. (2019). Callousness and Meanness Traits Are Associated with Increased N2 Amplitude in a Community Sample of Adolescents and Adults. Neuroscience Letters, 706, 1-6.
https://doi.org/10.1016/j.neulet.2019.04.056
[83]  Ribes‐Guardiola, P., Poy, R., Patrick, C. J., & Moltó, J. (2020). Electrocortical Measures of Performance Monitoring from Go/No‐Go and Flanker Tasks: Differential Relations with Trait Dimensions of the Triarchic Model of Psychopathy. Psychophysiology, 57, e13573.
https://doi.org/10.1111/psyp.13573
[84]  Richetto, J., & Meyer, U. (2021). Epigenetic Modifications in Schizophrenia and Related Disorders: Molecular Scars of Environmental Exposures and Source of Phenotypic Variability. Biological Psychiatry, 89, 215-226.
https://doi.org/10.1016/j.biopsych.2020.03.008
[85]  Ruchsow, M., Groen, G., Kiefer, M., Hermle, L., Spitzer, M., & Falkenstein, M. (2008). Impulsiveness and ERP Components in a Go/NoGo Task. Journal of Neural Transmission, 115, 909-915.
https://doi.org/10.1007/s00702-008-0042-7
[86]  Salas, F., Nvo-Fernández, M., Leiva-Bianchi, M., Sáez, D. A., Páeza, G. S., García, M. V. et al. (2024). Components of Event-Related Potentials and Borderline Personality Disorder: A Meta-Analysis. European Journal of Psychotraumatology, 15, Article ID: 2297641.
https://doi.org/10.1080/20008066.2023.2297641
[87]  Scarpa, A., & Raine, A. (1997). Psychophysiology of Anger and Violent Behavior. Psychiatric Clinics of North America, 20, 375-394.
https://doi.org/10.1016/s0193-953x(05)70318-x
[88]  Shackman, J. E., & Pollak, S. D. (2014). Impact of Physical Maltreatment on the Regulation of Negative Affect and Aggression. Development and Psychopathology, 26, 1021-1033.
https://doi.org/10.1017/s0954579414000546
[89]  Sheffler, J. L., Meynadasy, M. A., Taylor, D. T., Kiosses, D. N., & Hajcak, G. (2022). Subjective, Neuropsychological, and Neural Markers of Memory in Older Adults. International Psychogeriatrics, 34, 1035-1043.
https://doi.org/10.1017/s1041610221002623
[90]  Silverstein, S. M., Del Pozzo, J., Roché, M., Boyle, D., & Miskimen, T. (2015). Schizophrenia and Violence: Realities and Recommendations. Crime Psychology Review, 1, 21-42.
https://doi.org/10.1080/23744006.2015.1033154
[91]  Stoddard, S. A., Epstein-Ngo, Q., Walton, M. A., Zimmerman, M. A., Chermack, S. T., Blow, F. C. et al. (2015). Substance Use and Violence among Youth: A Daily Calendar Analysis. Substance Use & Misuse, 50, 328-339.
https://doi.org/10.3109/10826084.2014.980953
[92]  Sun, L., Li, J., Niu, G., Zhang, L., & Chang, H. (2020). Reactive Aggression Affects Response Inhibition to Angry Expressions in Adolescents: An Event-Related Potential Study Using the Emotional Go/No-Go Paradigm. Frontiers in Psychology, 11, Article 558461.
https://doi.org/10.3389/fpsyg.2020.558461
[93]  Sun, L., Liu, Z., Zhang, Y., Jing, Y., Lei, Y., & Zhang, Y. (2023). The Cognitive Neural Mechanism of Response Inhibition and Error Processing to Fearful Expressions in Adolescents with High Reactive Aggression. Frontiers in Psychology, 13, Article 984474.
https://doi.org/10.3389/fpsyg.2022.984474
[94]  Surguy, S. M., & Bond, A. J. (2006). P300 to Emotionally Relevant Stimuli as an Indicator of Aggression Levels. Aggressive Behavior, 32, 253-260.
https://doi.org/10.1002/ab.20124
[95]  Tao, Q., Jiang, L., Li, F., Qiu, Y., Yi, C., Si, Y. et al. (2022). Dynamic Networks of P300-Related Process. Cognitive Neurodynamics, 16, 975-985.
https://doi.org/10.1007/s11571-021-09753-3
[96]  Teplin, L. A., McClelland, G. M., Abram, K. M., & Weiner, D. A. (2005). Crime Victimization in Adults with Severe Mental Illness: Comparison with the National Crime Victimization Survey. Archives of General Psychiatry, 62, 911-921.
https://doi.org/10.1001/archpsyc.62.8.911
[97]  Teti Mayer, J., Compagne, C., Nicolier, M., Grandperrin, Y., Chabin, T., Giustiniani, J. et al. (2021). Towards a Functional Neuromarker of Impulsivity: Feedback-Related Brain Potential during Risky Decision-Making Associated with Self-Reported Impulsivity in a Non-Clinical Sample. Brain Sciences, 11, Article 671.
https://doi.org/10.3390/brainsci11060671
[98]  Tillem, S., Weinstein, H., & Baskin-Sommers, A. (2021). Psychopathy Is Associated with an Exaggerated Attention Bottleneck: EEG and Behavioral Evidence from a Dual-Task Paradigm. Cognitive, Affective, & Behavioral Neuroscience, 21, 881-893.
https://doi.org/10.3758/s13415-021-00891-z
[99]  Tremblay, P. F., & Belchevski, M. (2004). Did the Instigator Intend to Provoke? A Key Moderator in the Relation between Trait Aggression and Aggressive Behavior. Aggressive Behavior, 30, 409-424.
https://doi.org/10.1002/ab.20027
[100]  Tsuchiya, N., Wilke, M., Frässle, S., & Lamme, V. A. F. (2015). No-Report Paradigms: Extracting the True Neural Correlates of Consciousness. Trends in Cognitive Sciences, 19, 757-770.
https://doi.org/10.1016/j.tics.2015.10.002
[101]  Venables, N. C., Patrick, C. J., Hall, J. R., & Bernat, E. M. (2011). Clarifying Relations between Dispositional Aggression and Brain Potential Response: Overlapping and Distinct Contributions of Impulsivity and Stress Reactivity. Biological Psychology, 86, 279-288.
https://doi.org/10.1016/j.biopsycho.2010.12.009
[102]  Verdejo-García, A., Lawrence, A. J., & Clark, L. (2008). Impulsivity as a Vulnerability Marker for Substance-Use Disorders: Review of Findings from High-Risk Research, Problem Gamblers and Genetic Association Studies. Neuroscience & Biobehavioral Reviews, 32, 777-810.
https://doi.org/10.1016/j.neubiorev.2007.11.003
[103]  Wan, L., Baldridge, R. M., Colby, A. M., & Stanford, M. S. (2010). Association of P3 Amplitude to Treatment Completion in Substance Dependent Individuals. Psychiatry Research, 177, 223-227.
https://doi.org/10.1016/j.psychres.2009.01.033
[104]  Wang, Y., Yang, Q., Zhu, B., Ye, S., Tian, X., & Krueger, F. (2020). High Levels of Psychopathic Traits Increase the Risk of Transferring Reactive Aggression to Innocent People after Provocation: Evidence from an ERP Study. Biological Psychology, 153, Article ID: 107891.
https://doi.org/10.1016/j.biopsycho.2020.107891
[105]  Wilkowski, B. M., & Robinson, M. D. (2012). When Aggressive Individuals See the World More Accurately: The Case of Perceptual Sensitivity to Subtle Facial Expressions of Anger. Personality and Social Psychology Bulletin, 38, 540-553.
https://doi.org/10.1177/0146167211430233
[106]  Wu, Y., Kang, R., Yan, Y., Gao, K., Li, Z., Jiang, J. et al. (2018). Epidemiology of Schizophrenia and Risk Factors of Schizophrenia-Associated Aggression from 2011 to 2015. Journal of International Medical Research, 46, 4039-4049.
https://doi.org/10.1177/0300060518786634
[107]  Wu, Z., Zhou, Z., Lu, W., Liu, L., Zhu, Q., & Su, G. (2023). Study on Clinical Characteristics of Event‐related Potential P300 in Elderly Schizophrenics and Associated Risk Factors. Brain and Behavior, 13, e2966.
https://doi.org/10.1002/brb3.2966
[108]  Xian, Z., Liu, H., Gu, Y., Hu, Z., & Li, G. (2024). EEG Biomarkers of Behavioral Inhibition in Patients with Depression Who Committed Violent Offenses: A Go/NoGo ERP Study. Cerebral Cortex, 34, bhae010.
https://doi.org/10.1093/cercor/bhae010
[109]  Yancey, J. R., Venables, N. C., Hicks, B. M., & Patrick, C. J. (2013). Evidence for a Heritable Brain Basis to Deviance-Promoting Deficits in Self-Control. Journal of Criminal Justice, 41, 309-317.
https://doi.org/10.1016/j.jcrimjus.2013.06.002
[110]  Yi, F., Chen, H., Wang, X., Shi, H., Yi, J., Zhu, X. et al. (2012). Amplitude and Latency of Feedback-Related Negativity: Aging and Sex Difference. NeuroReport, 23, 963-969.
https://doi.org/10.1097/wnr.0b013e328359d1c4
[111]  Yu, C., Chen, C., Muggleton, N. G., Ko, C., & Liu, S. (2022). Acute Exercise Improves Inhibitory Control but Not Error Detection in Male Violent Perpetrators: An ERPs Study with the Emotional Stop Signal Task. Frontiers in Human Neuroscience, 16, Article 796180.
https://doi.org/10.3389/fnhum.2022.796180
[112]  Zhang, Z., Wang, Q., Liu, X., Song, P., & Yang, B. (2017). Differences in Inhibitory Control between Impulsive and Premeditated Aggression in Juvenile Inmates. Frontiers in Human Neuroscience, 11, Article 373.
https://doi.org/10.3389/fnhum.2017.00373
[113]  Žukov, I., Ptáček, R., Kozelek, P., Fischer, S., Domluvílová, D., Raboch, J., Hruby, T., & Susta, M. (2009). Brain Wave P300: A Comparative Study of Various Forms of Criminal Activity. Medical Science Monitor, 15, CR349-354.
https://www.medscimonit.com/abstract/index/idArt/869709

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133