View Record in Scopus | Cited By in Scopus (201) Verbruggen & Logan, 2008 F. Verbruggen and G. Logan, Response inhibition in the Stop-signal paradigm, Trends Cogn. Sci. 12 (11) (2008), pp. 418–424. Article | PDF (467 K) | View Record in Scopus | Cited By in Scopus (22) Verbruggen & Logan, 2009 F. Verbruggen and G.D. Logan, Models of response inhibition in the Stop-signal and stop-change paradigms, Neurosci. Biobehav. Rev. 33 (5) (2009), pp. 647–661. Article | PDF (646 K) | View Record in Scopus | Cited By in Scopus (18) Williams et al., 1999 B.R. Williams, J.S. Ponesse, R.J. Schachar, G.D. Logan and R. Tannock, Development of inhibitory control across the life span, Dev. Psychol. 35 (1) (1999), pp. 205–213. Abstract | Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (206) Xue et al., 2008 G. Xue, A.R. Aron and R.A. Poldrack, Common neural substrates for inhibition of spoken and manual responses, Cereb. Cortex 18 (8) (2008), pp. 1923–1932. View Record in Scopus | Cited By in Scopus (31) Yarkoni, 2009 T. Yarkoni, Big correlations in little studies: inflated fMRI correlations reflect low statistical power — commentary on Vul et al. (2009), Perspect. Psychol. Sci. 4 (3) (2009), pp. 294–298. Full Text via CrossRef Appendix A. Supplementary data Full-size image (65K) High-quality image (230K) Supplementary Fig. 1. Whole-brain activation in the Stop-signal task: (A) StopInhibit–Go and (B) Go–Null group-level contrasts corrected for whole-brain multiple comparisons. Statistical maps were projected onto an average cortical surface using CARET; axial slices are included to show additional activation with coordinates in MNI space. (Right = Right.) Full-size image (59K) High-quality image (209K) Supplementary Fig. 2. Whole-brain activation in the Stop-signal task: (A) StopInhibit–StopRespond and (B) StopRespond–StopInhibit group-level contrasts corrected for whole-brain multiple comparisons. Statistical maps were projected onto an average cortical surface using CARET; axial slices are included to show additional activation with coordinates in MNI space. (Right = Right.) Full-size image (69K) High-quality image (243K) Supplementary Fig. 3. Whole-brain activation in the Stop-signal task: (A) Go–StopRespond and (B) StopRespond–Go group-level contrasts corrected for whole-brain multiple comparisons. Statistical maps were projected onto an average cortical surface using CARET; axial slices are included to show additional activation with coordinates in MNI space. (Right = Right.) Corresponding author. Department of Psychology and Center for Neurobehavioral Genetics, Franz Hall, Box 951563, Los Angeles, CA 90095-1563, USA. Fax: + 1 310 206 5895.
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