Go/No-Go Task

Studies: 241   |   Proportions of No-Go: 6-60%   |   Trial durations: 800-17500 ms

Publications    |    Proportion of No-Go    |    Maximum Trial Duration    |    Authors    |    Recommendations

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In stop-signal tasks, prepotent motor activity is elicited by delaying stop-signals relative to Go-signals. In Go/No-Go tasks, however, trials include only one signal – "Go" or "No-Go". Hence, prepotent motor activity has to be ensured differently; for example, by using rare No-Go trials and presenting stimuli at rapid pace. However, the literature exhibits a wide range of frequencies of No-Go trials and trial durations. It is unclear whether slow-paced and/or equiprobable Go/No-Go tasks elicit prepotent motor activity – and hence, whether they probe inhibitory control. There are currently 241 publications that report using the Go/No-Go task stored in the database, and they reported a range of frequencies from 6 to 60% of No-Go trials and a range of maximum trial durations from 800 to 17500 ms. The table below lists all publications and their reported p(No-Go) and stimulus duration. Use the search field to filter for authors/journals, or click the citation for a detailed view.

Note that papers were excluded if
1. A nonclassic design was used. A nonclassic design is one that does not strictly conform to the go/nogo task as presented here (e.g., a response is prepared to a stimulus that precedes the actual go/no-go signal)
2. Information about the exact parameters was missing or unclear.
3. Articles were not in English language.
4. Articles were nonempirical (e.g., reviews or protocols,).
5. Studies were performed on nonhuman animals.
6. Manuscripts were not available.

Proportion of No-Go < 5% > 50%
Max Trial Duration < 1000 ms > 4000 ms

Full reference Study Method p(No-Go) (%) Max Trial Duration (ms)
Ajilore, O., Vizueta, N., Walshaw, P. D., Zhan, L., Leow, A., Altshuler, L. L. (2015). Connectome signatures of neurocognitive abnormalities in euthymic bipolar I disorder. Journal of Psychiatric Research, 68(), 37-44. doi:10.1016/j.jpsychires.2015.05.017 Ajilore et al. (2015) fMRI 50% 2000
Albares, M., Lio, G., Criaud, M., Anton, J. L., Desmurget, M., Boulinguez, P. (2014). The dorsal medial frontal cortex mediates automatic motor inhibition in uncertain contexts: Evidence from combined fMRI and EEG studies. Human Brain Mapping, 35(11), 5517-5531. doi:10.1002/hbm.22567 Albares et al. (2014) EEG 50% 7100
Albares, M., Lio, G., Criaud, M., Anton, J. L., Desmurget, M., Boulinguez, P. (2014). The dorsal medial frontal cortex mediates automatic motor inhibition in uncertain contexts: Evidence from combined fMRI and EEG studies. Human Brain Mapping, 35(11), 5517-5531. doi:10.1002/hbm.22568 Albares et al. (2014), study 2 fMRI 50% 12100
Albert, J., López-Martín, S., Carretié, L. (2010). Emotional context modulates response inhibition: Neural and behavioral data. NeuroImage, 49(1), 914-921. doi:10.1016/j.neuroimage.2009.08.045 Albert et al. (2010) EEG 30% 1500
Albert, J., López-Martín, S., Hinojosa, J. A., Carretié, L. (2013). Spatiotemporal characterization of response inhibition. NeuroImage, 76(), 272-281. doi:10.1016/j.neuroimage.2013.03.011 Albert et al. (2013) EEG 20% 1300
Albert, J., López-Martín, S., Tapia, M., Montoya, D., Carretié, L. (2012). The role of the anterior cingulate cortex in emotional response inhibition. Human Brain Mapping, 33(9), 2147-2160. doi:10.1002/hbm.21347 Albert et al. (2012) fMRI 33% 1500
Almklov, E. L., Drummond, S. P. A., Orff, H., Alhassoon, O. M. (2015). The Effects of Sleep Deprivation on Brain Functioning in Older Adults. Behavioral Sleep Medicine, (March 2015), 1-22. doi:10.1080/15402002.2014.905474 Almklov et al. (2015) fMRI 31.5% 1500
Altshuler, L. L., Bookheimer, S. Y., Townsend, J. D., Proenza, M. A., Eisenberger, N. I., Sabb, F., Mintz, J., Cohen, M. S. (2005). Blunted activation in orbitofrontal cortex during mania: A functional magnetic resonance imaging study. Biological Psychiatry, 58(10), 763-769. doi:10.1016/j.biopsych.2005.09.012 Altshuler et al. (2005) fMRI 50% 2000
Ames, S. L., Wong, S. W., Bechara, A., Cappelli, C., Dust, M., Grenard, J. L., Stacy, A. W. (2014). Neural correlates of a Go/NoGo task with alcohol stimuli in light and heavy young drinkers. Behavioural Brain Research, 274(), 382-389. doi:10.1016/j.bbr.2014.08.039 Ames et al. (2014) fMRI 20% 4500
Anderson, I. M., Clark, L., Elliott, R., Kulkarni, B., Williams, S. R., Deakin, J. F. W. (2002). 5-HT(2C) receptor activation by m-chlorophenylpiperazine detected in humans with fMRI. Neuroreport, 13(12), 1547-51. doi: Anderson et al. (2002) fMRI 50% 2500
Arce, E., Leland, D. S., Miller, D. A., Simmons, A. N., Winternheimer, K. C., Paulus, M. P. (2006). Individuals with schizophrenia present hypo- and hyperactivation during implicit cueing in an inhibitory task. NeuroImage, 32(2), 704-713. doi:10.1016/j.neuroimage.2006.04.189 Arce et al. (2006) fMRI 32% 1700
Baglio, F., Blasi, V., Falini, A., Farina, E., Mantovani, F., Olivotto, F., Scotti, G., Nemni, R., Bozzali, M. (2011). Functional brain changes in early Parkinson's disease during motor response and motor inhibition. Neurobiology of Aging, 32(1), 115-124. doi:10.1016/j.neurobiolaging.2008.12.009 Baglio et al. (2011) fMRI 20% 6570
Bailey, N. W., Hoy, K. E., Maller, J. J., Segrave, R. A., Thomson, R., Williams, N., Daskalakis, Z. J., Fitzgerald, P. B. (2014). An exploratory analysis of go/nogo event-related potentials in major depression and depression following traumatic brain injury. Psychiatry Research: Neuroimaging, 224(3), 324-334. doi:10.1016/j.pscychresns.2014.09.008 Bailey et al. (2014) EEG 50% 1150
Ballanger, B., Van Eimeren, T., Moro, E., Lozano, A. M., Hamani, C., Boulinguez, P., Pellecchia, G., Houle, S., Poon, Y. Y., Lang, A. E., Strafella, A. P. (2009). Stimulation of the subthalamic nucleus and impulsivity: Release your horses. Annals of Neurology, 66(6), 817-824. doi:10.1002/ana.21795 Ballanger et al. (2009) fMRI 40% 4000
Bannbers, E., Gingnell, M., Engman, J., Morell, A., Comasco, E., Kask, K., Garavan, H., Wikström, J., Sundström Poromaa, I. (2012). The effect of premenstrual dysphoric disorder and menstrual cycle phase on brain activity during response inhibition. Journal of Affective Disorders, 142(1-3), 347-350. doi:10.1016/j.jad.2012.04.006 Bannbers et al. (2012) fMRI 10% 1000
Bannbers, E., Gingnell, M., Engman, J., Morell, A., Sylvén, S., Skalkidou, A., Kask, K., Bäckström, T., Wikström, J., Sundström Poromaa, I. (2013). Prefrontal activity during response inhibition decreases over time in the postpartum period. Behavioural Brain Research, 241(1), 132-138. doi:10.1016/j.bbr.2012.12.003 Bannbers et al. (2013) fMRI 10% 1000
Bannon, S., Gonsalvez, C. J., Croft, R. J., Boyce, P. M. (2002). Response inhibition deficits in obsessive-compulsive disorder. Psychiatry Research, 110(2), 165-174. doi:10.1016/S0165-1781(02)00104-X Bannon et al. (2002) Behavioral 25% 2000
Barry, R. J., De Blasio, F. M. (2012). EEG-ERP phase dynamics of children in the auditory Go/NoGo task. International Journal of Psychophysiology, 86(3), 251-261. doi:10.1016/j.ijpsycho.2012.10.001 Barry & De Blasio (2012) EEG 50% 1100
Barry, R. J., De Blasio, F. M. (2013). Sequential processing in the equiprobable auditory Go/NoGo task: a temporal PCA study. International Journal of Psychophysiology, 89(1), 123-7. doi:10.1016/j.ijpsycho.2013.06.012 Barry & De Blasio (2013) EEG 50% 1100
Barry, R. J., De Blasio, F. M., Borchard, J. P. (2014). Sequential processing in the equiprobable auditory Go/NoGo task: children vs. adults. Clinical Neurophysiology, 125(10), 1995-2006. doi:10.1016/j.clinph.2014.02.018 Barry et al. (2014) EEG 50% 1100
Barry, R. J., De Blasio, F. M., Cave, A. E. (2016). Sequential processing in young and older adults in the equiprobable auditory Go/NoGo task. Clinical Neurophysiology, 127(5), 2273-85. doi:10.1016/j.clinph.2016.02.010 Barry et al. (2016) EEG 50% 1100
Barry, R. J., De Blasio, F. M., De Pascalis, V., Karamacoska, D. (2014). Preferred EEG brain states at stimulus onset in a fixed interstimulus interval equiprobable auditory Go/NoGo task: a definitive study. International Journal of Psychophysiology, 94(1), 42-58. doi:10.1016/j.ijpsycho.2014.07.005 Barry et al. (2014) EEG 50% 1100
Barry, R. J., Rushby, J. A. (2006). An orienting reflex perspective on anteriorisation of the P3 of the event-related potential. Experimental Brain Research, 173(3), 539-545. doi:10.1007/s00221-006-0590-8 Barry & Rushby (2006) EEG 50% 1150
Beck, S. M., Ruge, H., Schindler, C., Burkart, M., Miller, R., Kirschbaum, C., Goschke, T. (2016). Effects of Ginkgo biloba extract EGb 761?? on cognitive control functions, mental activity of the prefrontal cortex and stress reactivity in elderly adults with subjective memory impairment - A randomized double-blind placebo-controlled trial. Human Psychopharmacology, 31(3), 227-242. doi:10.1002/hup.2534 Beck et al. (2016) fMRI 20% 1450
Benikos, N., Johnstone, S. J. (2009). Arousal-state modulation in children with AD/HD. Clinical Neurophysiology, 120(1), 30-40. doi:10.1016/j.clinph.2008.09.026 Benikos & Johnstone (2009) EEG 30% 9000
Benikos, N., Johnstone, S. J., Roodenrys, S. J. (2013). Varying task difficulty in the Go/Nogo task: The effects of inhibitory control, arousal, and perceived effort on ERP components. International Journal of Psychophysiology, 87(3), 262-272. doi:10.1016/j.ijpsycho.2012.08.005 Benikos et al. (2013) EEG 30% 2950
Benikos, N., Johnstone, S. J., Roodenrys, S. J. (2013). Short-term training in the Go/Nogo task: Behavioural and neural changes depend on task demands. International Journal of Psychophysiology, 87(3), 301-312. doi:10.1016/j.ijpsycho.2012.12.001 Benikos et al. (2013) EEG 30% 2950
Bernstein, L. J., Catton, P. A., Tannock, I. F. (2014). Intra-individual variability in women with breast cancer. Journal of the International Neuropsychological Society, 20(4), 380-90. doi:10.1017/S1355617714000125 Bernstein et al. (2014) Behavioral 10% 4000
Beste, C., Dziobek, I., Hielscher, H., Willemssen, R., Falkenstein, M. (2009). Effects of stimulus-response compatibility on inhibitory processes in Parkinson's disease. European Journal of Neuroscience, 29(4), 855-860. doi:10.1111/j.1460-9568.2009.06621.x Beste et al. (2009) EEG 50% 1900
Beste, C., Ness, V., Falkenstein, M., Saft, C. (2011). On the role of fronto-striatal neural synchronization processes for response inhibition-Evidence from ERP phase-synchronization analyses in pre-manifest Huntington's disease gene mutation carriers. Neuropsychologia, 49(12), 3484-3493. doi:10.1016/j.neuropsychologia.2011.08.024 Beste et al. (2011) EEG 33% 2100
Beste, C., Saft, C., Andrich, J., Gold, R., Falkenstein, M. (2008). Response inhibition in Huntington's disease-A study using ERPs and sLORETA. Neuropsychologia, 46(5), 1290-1297. doi:10.1016/j.neuropsychologia.2007.12.008 Beste et al. (2008) EEG 50% 1900
Beste, C., Stock, A. K., Epplen, J. T., Arning, L. (2016). Dissociable electrophysiological subprocesses during response inhibition are differentially modulated by dopamine D1 and D2 receptors. European Neuropsychopharmacology, 26(6), 1029-1036. doi:10.1016/j.euroneuro.2016.03.002 Beste et al. (2016) EEG 30% 3500
Birak, K. S., Terry, P., Higgs, S. (2010). Effect of cues associated with an alcoholic beverage on executive function. Journal of Studies on Alcohol and Drugs, 71(4), 562-569. doi: Birak et al. (2010) Behavioral 50% 1200
Borchard, J. P., Barry, R. J., De Blasio, F. M. (2015). Sequential processing in an auditory equiprobable Go/NoGo task with variable interstimulus interval. International Journal of Psychophysiology, 97(2), 145-52. doi:10.1016/j.ijpsycho.2015.05.010 Borchard et al. (2015) EEG 50% 1500
Bowley, C., Faricy, C., Hegarty, B., Johnstone, S. J., Smith, J. L., Kelly, P. J., Rushby, J. A. (2013). The effects of inhibitory control training on alcohol consumption, implicit alcohol-related cognitions and brain electrical activity. International Journal of Psychophysiology, 89(3), 342-348. doi:10.1016/j.ijpsycho.2013.04.011 Bowley et al. (2013) EEG 50% 3250
Breimhorst, M., Falkenstein, M., Marks, A., Griefahn, B. (2008). The relationship between poor sleep and inhibitory functions indicated by event-related potentials. Experimental Brain Research, 187(4), 631-639. doi:10.1007/s00221-008-1333-9 Breimhorst et al. (2008) EEG 50% 2800
Brier, M. R., Ferree, T. C., Maguire, M. J., Moore, P. S., Spence, J. S., Tillman, G. D., Hart, J., Kraut, M. A. (2010). Frontal theta and alpha power and coherence changes are modulated by semantic complexity in Go/NoGo tasks. International Journal of Psychophysiology, 78(3), 215-224. doi:10.1016/j.ijpsycho.2010.07.011 Brier et al. (2010) EEG 20% 2000
Brown, M. R. G., Lebel, R. M., Dolcos, F., Wilman, A. H., Silverstone, P. H., Pazderka, H., Fujiwara, E., Wild, T. C., Carroll, A. M., Hodlevskyy, O., Zedkova, L., Zwaigenbaum, L., Thompson, A. H., Greenshaw, A. J., Dursun, S. M. (2012). Effects of emotional context on impulse control. NeuroImage, 63(1), 434-446. doi:10.1016/j.neuroimage.2012.06.056 Brown et al. (2012) fMRI 20% 8000
Broyd, S. J., Johnstone, S. J., Barry, R. J., Clarke, A. R., Mccarthy, R., Selikowitz, M., Lawrence, C. A. (2005). The effect of methylphenidate on response inhibition and the event-related potential of children with Attention Deficit/Hyperactivity Disorder. International Journal of Psychophysiology, 58(1), 47-58. doi:10.1016/j.ijpsycho.2005.03.008 Broyd et al. (2005) EEG 30% 5500
Bruin, K. J., Wijers, A. A., Van Staveren, A. S. J. (2001). Response priming in a go/nogo task: Do we have to explain the go/nogo N2 effect in terms of response activation instead of inhibition?. Clinical Neurophysiology, 112(9), 1660-1671. doi:10.1016/S1388-2457(01)00601-0 Bruin et al. (2001) EEG 50% 2700
Carmona, S., Hoekzema, E., Ramos-Quiroga, J. A., Richarte, V., Canals, C., Bosch, R., Rovira, M., Soliva, J. C., Bulbena, A., Tobeña, A., Casas, M., Vilarroya, O. (2012). Response inhibition and reward anticipation in medication-na??ve adults with attention-deficit/hyperactivity disorder: A within-subject case-control neuroimaging study. Human Brain Mapping, 33(10), 2350-2361. doi:10.1002/hbm.21368 Carmona et al. (2012) fMRI 30% 2250
Chang, Y., Hung, C., Huang, C., Hatfield, B. D., Hung, T., , (2014). Effects of an aquatic exercise program on inhibitory control in children with ADHD: a preliminary study. Archives of Clinical Neuropsychology, 29(3), 217-223. doi:10.1093/arclin/acu003 Chang et al. (2014) Behavioral 30% 2200
Chavan, C. F., Mouthon, M., Draganski, B., Van Der Zwaag, W., Spierer, L. (2015). Differential patterns of functional and structural plasticity within and between inferior frontal gyri support training-induced improvements in inhibitory control proficiency. Human Brain Mapping, 36(7), 2527-2543. doi:10.1002/hbm.22789 Chavan et al. (2015) fMRI 30% 2700
Chen, C. Y., Huang, M. F., Yen, J. Y., Chen, C. S., Liu, G. C., Yen, C. F., Ko, C. H. (2015). Brain correlates of response inhibition in Internet gaming disorder. Psychiatry and Clinical Neurosciences, 69(4), 201-209. doi:10.1111/pcn.12224 Chen et al. (2015) fMRI 50% 1500
Cheng, C., Chan, P. S., Niddam, D. M., Tsai, S., Hsu, S., Liu, C. (2016). Sensory gating, inhibition control and gamma oscillations in the human somatosensory cortex. Scientific Reports, 6(12), 20437. doi:10.1038/srep20437 Cheng et al. (2016) Other 20% 1250
Chiu, P. H., Holmes, A. J., Pizzagalli, D. A. (2008). Dissociable recruitment of rostral anterior cingulate and inferior frontal cortex in emotional response inhibition. NeuroImage, 42(2), 988-997. doi:10.1016/j.neuroimage.2008.04.248 Chiu et al. (2008) EEG 50% 1480
Chun, J., Karam, Z. N., Marzinzik, F., Kamali, M., O'Donnell, L., Tso, I. F., Manschreck, T. C., Mcinnis, M., Deldin, P. J. (2013). Can P300 distinguish among schizophrenia, schizoaffective and bipolar I disorders? An ERP study of response inhibition. Schizophrenia Research, 151(1-3), 175-184. doi:10.1016/j.schres.2013.10.020 Chun et al. (2013) EEG 30% 2900
Claus, E. D., Feldstein Ewing, S. W., Filbey, F. M., Hutchison, K. E. (2013). Behavioral control in alcohol use disorders: relationships with severity. J Stud Alcohol Drugs, 74(1), 141-151. doi: Claus et al. (2013) fMRI 6.4% 1000
Cohen-Gilbert, J. E., Thomas, K. M. (2013). Inhibitory control during emotional distraction across adolescence and early adulthood. Child Development, 84(6), 1954-66. doi:10.1111/cdev.12085 Cohen-Gilbert & Thomas (2013) Behavioral 25% 1500
Cojan, Y., Waber, L., Carruzzo, A., Vuilleumier, P. (2009). Motor inhibition in hysterical conversion paralysis. NeuroImage, 47(3), 1026-1037. doi:10.1016/j.neuroimage.2009.05.023 Cojan et al. (2009) fMRI 25% 7050
Connolly, C. G., Foxe, J. J., Nierenberg, J., Shpaner, M., Garavan, H. (2012). The neurobiology of cognitive control in successful cocaine abstinence. Drug and Alcohol Dependence, 121(1-2), 45-53. doi:10.1016/j.drugalcdep.2011.08.007 Connolly et al. (2012) fMRI 6% 1000
Cservenka, A., Fair, D. A., Nagel, B. J. (2014). Emotional processing and brain activity in youth at high risk for alcoholism. Alcoholism: Clinical and Experimental Research, 38(7), 1912-1923. doi:10.1111/acer.12435 Cservenka et al. (2014) fMRI 30% 12500
Cservenka, A., Stein, H., Wilson, A. C., Nagel, B. J. (2015). Neurobiological Phenotypes of Familial Chronic Pain in Adolescence: A Pilot fMRI Study. Journal of Pain, 16(9), 913-925. doi:10.1016/j.jpain.2015.05.013 Cservenka et al. (2015) fMRI 30.2% 12500
D'Agati, E., Hoegl, T., Dippel, G., Curatolo, P., Bender, S., Kratz, O., Moll, G. H., Heinrich, H. (2014). Motor cortical inhibition in ADHD: Modulation of the transcranial magnetic stimulation-evoked N100 in a response control task. Journal of Neural Transmission, 121(3), 315-325. doi:10.1007/s00702-013-1097-7 D'Agati et al. (2014) Other 50% 6000
De Blasio, F. M., Barry, R. J. (2013). Prestimulus delta and theta determinants of ERP responses in the Go/NoGo task. International Journal of Psychophysiology, 87(3), 279-88. doi:10.1016/j.ijpsycho.2012.09.016 De Blasio & Barry (2013) EEG 50% 1100
De Blasio, F. M., Barry, R. J. (2013). Prestimulus alpha and beta determinants of ERP responses in the Go/NoGo task. International Journal of Psychophysiology, 89(1), 9-17. doi:10.1016/j.ijpsycho.2013.04.018 De Blasio & Barry (2013) EEG 50% 1100
De Pretto, M., Sallard, E., Spierer, L. (2016). State dependency of inhibitory control performance: an electrical neuroimaging study. European Journal of Neuroscience, 44(2), 1826-1832. doi:10.1111/ejn.13265 De Pretto et al. (2016) EEG 50% 3900
De Sanctis, P., Butler, J. S., Malcolm, B. R., Foxe, J. J. (2014). Recalibration of inhibitory control systems during walking-related dual-task interference: a mobile brain-body imaging (MOBI) study. NeuroImage, 94(), 55-64. doi:10.1016/j.neuroimage.2014.03.016 De Sanctis et al. (2014) EEG 15% 1000
Dibbets, P., Evers, L., Hurks, P., Marchetta, N., Jolles, J. (2009). Differences in feedback- and inhibition-related neural activity in adult ADHD. Brain and Cognition, 70(1), 73-83. doi:10.1016/j.bandc.2009.01.001 Dibbets et al. (2009) fMRI 14.3% 4000
Dirnberger, G., Lang, W., Lindinger, G. (2010). Differential effects of age and executive functions on the resolution of the contingent negative variation: A reexamination of the frontal aging theory. Age, 32(3), 323-335. doi:10.1007/s11357-010-9134-z Dirnberger et al. (2010) Behavioral 50% 10400
Dong, G., Lu, Q., Zhou, H., Zhao, X. (2010). Impulse inhibition in people with Internet addiction disorder: Electrophysiological evidence from a Go/NoGo study. Neuroscience Letters, 485(2), 138-142. doi:10.1016/j.neulet.2010.09.002 Dong et al. (2010) EEG 25% 1250
Draper, A., Jude, L., Jackson, G. M., Jackson, S. R. (2015). Motor excitability during movement preparation in Tourette syndrome. Journal of Neuropsychology, 9(1), 33-44. doi:10.1111/jnp.12033 Draper et al. (2015) Other 16.7% 7000
Drummond, S. P. A., Paulus, M. P., Tapert, S. F. (2006). Effects of two nights sleep deprivation and two nights recovery sleep on response inhibition. Journal of Sleep Research, 15(3), 261-265. doi:10.1111/j.1365-2869.2006.00535.x Drummond et al. (2006) Behavioral 31.5% 1500
Duan, X., Shi, J., Wu, J., Mou, Y., Cui, H., Wang, G. (2009). Electrophysiological correlates for response inhibition in intellectually gifted children: A Go/NoGo study. Neuroscience Letters, 457(1), 45-48. doi:10.1016/j.neulet.2009.04.006 Duan et al. (2009) EEG 50% 1350
Duerden, E. G., Taylor, M. J., Soorya, L. V., Wang, T., Fan, J., Anagnostou, E. (2013). Neural correlates of inhibition of socially relevant stimuli in adults with autism spectrum disorder. Brain Research, 1533(), 80-90. doi:10.1016/j.brainres.2013.08.021 Duerden et al. (2013) fMRI 50% 2250
Eggers, K., De Nil, L. F., Van Den Bergh, B. R. H. (2013). Inhibitory control in childhood stuttering. Journal of Fluency Disorders, 38(1), 1-13. doi:10.1016/j.jfludis.2012.10.001 Eggers et al. (2013) Behavioral 50% 2800
Eichele, H., Eichele, T., Hammar, A., Freyberger, H. J., Hugdahl, K., Plessen, K. J. (2010). Go/NoGo performance in boys with Tourette syndrome. Child Neuropsychology, 16(2), 162-168. doi:10.1080/09297040903150182 Eichele et al. (2010) Behavioral 25% 1400
Eimer, M. (1993). Effects of attention and stimulus probability on ERPs in a Go/Nogo task. Biological Psychology, 35(2), 123-138. doi:10.1016/0301-0511(93)90009-W Eimer (1993) EEG 25% 3000
Eimer, M. (1993). Effects of attention and stimulus probability on ERPs in a Go/Nogo task. Biological Psychology, 35(2), 123-138. doi:10.1016/0301-0511(93)90009-W Eimer (1993), study 2 EEG 50% 3000
Feldstein Ewing, S. W., Houck, J. M., Bryan, A. D. (2015). Neural activation during response inhibition is associated with adolescents' frequency of risky sex and substance use. Addictive Behaviors, 44(), 80-87. doi:10.1016/j.addbeh.2014.12.007 Feldstein Ewing et al. (2015) fMRI 20% 3050
Festman, J., Rodriguez-Fornells, A., Münte, T. F. (2010). Individual differences in control of language interference in late bilinguals are mainly related to general executive abilities. Behavioral and Brain Functions, 6(), 5. doi:10.1186/1744-9081-6-5 Festman et al. (2010) Behavioral 60% 1000
Filbey, F. M., Claus, E. D., Morgan, M., Forester, G. R., Hutchison, K. E. (2012). Dopaminergic genes modulate response inhibition in alcohol abusing adults. Addiction Biology, 17(6), 1046-1056. doi:10.1111/j.1369-1600.2011.00328.x Filbey et al. (2012) fMRI 8% 1000
Fillmore, M. T., Rush, C. R. (2005). Polydrug abusers display impaired discrimination-reversal learning in a model of behavioural control. Journal of Psychopharmacology, 20(1), 24-32. doi:10.1177/0269881105057000 Fillmore & Rush (2005) Behavioral 50% 3500
Fisher, T., Aharon-Peretz, J., Pratt, H. (2011). Dis-regulation of response inhibition in adult Attention Deficit Hyperactivity Disorder (ADHD): An ERP study. Clinical Neurophysiology, 122(12), 2390-2399. doi:10.1016/j.clinph.2011.05.010 Fisher et al. (2011) EEG 20% 2000
Fox, A. M., Michie, P. T., Wynne, C. D. L., Maybery, M. T. (2000). ERP correlates of response inhibition to elemental and configural stimuli in a negative patterning task. Clinical Neurophysiology, 111(6), 1045-1053. doi:10.1016/S1388-2457(00)00257-1 Fox et al. (2000) EEG 25% 2000
Fu, L. P., Bi, G. H., Zou, Z. T., Wang, Y., Ye, E., Ma, L., Fan, M., Yang, Z. (2008). Impaired response inhibition function in abstinent heroin dependents: An fMRI study. Neuroscience Letters, 438(3), 322-326. doi:10.1016/j.neulet.2008.04.033 Fu et al. (2008) fMRI 50% 2000
Fujiyama, H., Tandonnet, C., Summers, J. J. (2011). Age-related differences in corticospinal excitability during a Go/NoGo task. Psychophysiology, 48(10), 1448-1455. doi:10.1111/j.1469-8986.2011.01201.x Fujiyama et al. (2011) Other 50% 6000
Gajewski, P. D., Falkenstein, M. (2013). Effects of task complexity on ERP components in Go/Nogo tasks. International Journal of Psychophysiology, 87(3), 273-278. doi:10.1016/j.ijpsycho.2012.08.007 Gajewski & Falkenstein (2013) EEG 50% 1600
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All contents CC-BY Malte Elson (2016-2017), Ruhr University Bochum; malte(dot)elson(at)rub(dot)de; @maltoesermalte