Intellectual ability and cortical development in children and adolescents (original) (raw)

References

  1. Spearman, C. 'General intelligence' objectively determined and measured. Am. J. Psychol. 15, 201–293 (1904)
    Article Google Scholar
  2. Gottfredson, L. S. Why g matters: The complexity of everyday life. Intelligence 24, 79–132 (1997)
    Article Google Scholar
  3. Deary, I. J., Whalley, L. J., Lemmon, H., Crawford, J. R. & Starr, J. M. The stability of individual differences in mental ability from childhood to old age: Follow-up of the 1932 Scottish Mental Survey. Intelligence 28, 49–55 (2000)
    Article Google Scholar
  4. Booth, J. R. et al. Neural development of selective attention and response inhibition. Neuroimage 20, 737–751 (2003)
    Article PubMed Google Scholar
  5. Sowell, E. R. et al. Longitudinal mapping of cortical thickness and brain growth in normal children. J. Neurosci. 24, 8223–8231 (2004)
    Article CAS PubMed PubMed Central Google Scholar
  6. McDaniel, M. Big-brained people are smarter. Intelligence 33, 337–346 (2005)
    Article Google Scholar
  7. Wilke, M., Sohn, J. H., Byars, A. W. & Holland, S. K. Bright spots: correlations of gray matter volume with IQ in a normal pediatric population. Neuroimage 20, 202–215 (2003)
    Article PubMed Google Scholar
  8. Frangou, S., Chitins, X. & Williams, S. C. Mapping IQ and gray matter density in healthy young people. Neuroimage 23, 800–805 (2004)
    Article PubMed Google Scholar
  9. Haier, R. J., Jung, R. E., Yeo, R. A., Head, K. & Alkire, M. T. Structural brain variation and general intelligence. Neuroimage 23, 425–433 (2004)
    Article PubMed Google Scholar
  10. Kraemer, H. C., Yesavage, J. A., Taylor, J. L. & Kupfer, D. How can we learn about developmental processes from cross-sectional studies, or can we? Am. J. Psychiatry 157, 163–171 (2000)
    Article CAS PubMed Google Scholar
  11. Giedd, J. N. et al. Brain development during childhood and adolescence: a longitudinal MRI study. Nature Neurosci. 2, 861–863 (1999)
    Article CAS PubMed Google Scholar
  12. Wechsler, D. Manual for the Wechsler Intelligence Scale for Children—Revised (The Psychological Corporation, New York, 1974)
    Google Scholar
  13. O'Donnell, S., Noseworthy, M. D., Levine, B. & Dennis, M. Cortical thickness of the frontopolar area in typically developing children and adolescents. Neuroimage 24, 948–954 (2005)
    Article PubMed Google Scholar
  14. Kabani, N., Le Goualher, G., MacDonald, D. & Evans, A. C. Measurement of cortical thickness using an automated 3-D algorithm: a validation study. Neuroimage 13, 375–380 (2001)
    Article CAS PubMed Google Scholar
  15. Lerch, J. P. & Evans, A. C. Cortical thickness analysis examined through power analysis and a population simulation. Neuroimage 24, 163–173 (2005)
    Article PubMed Google Scholar
  16. Gray, J. R., Chabris, C. F. & Braver, T. S. Neural mechanisms of general fluid intelligence. Nature Neurosci. 6, 316–322 (2003)
    Article CAS PubMed Google Scholar
  17. Duncan, J. et al. A neural basis for general intelligence. Science 289, 457–460 (2000)
    Article ADS CAS PubMed Google Scholar
  18. Kostovic, I., Judas, M., Rados, M. & Hrabac, P. Laminar organization of the human fetal cerebrum revealed by histochemical markers and magnetic resonance imaging. Cereb. Cortex 12, 536–544 (2002)
    Article PubMed Google Scholar
  19. Kostovic, I. & Rakic, P. Developmental history of the transient subplate zone in the visual and somatosensory cortex of the macaque monkey and human brain. J. Comp. Neurol. 297, 441–470 (1990)
    Article CAS PubMed Google Scholar
  20. Yakovlev, P. I. & Lecours, A. R. in Regional Development of the Brain in Early Life (ed. Minokowski, A.) (Blackwell Scientific, Oxford, 1967)
    Google Scholar
  21. Huttenlocher, P. R. & Dabholkar, A. S. Regional differences in synaptogenesis in human cerebral cortex. J. Comp. Neurol. 387, 167–178 (1997)
    Article CAS PubMed Google Scholar
  22. Hensch, T. K. Critical period regulation. Annu. Rev. Neurosci. 27, 549–579 (2004)
    Article CAS PubMed Google Scholar
  23. Chugani, H. T., Phelps, M. E. & Mazziotta, J. C. Positron emission tomography study of human brain functional development. Ann. Neurol. 22, 487–497 (1987)
    Article CAS PubMed Google Scholar
  24. Collins, D. L., Neelin, P., Peters, T. M. & Evans, A. C. Automatic 3D intersubject registration of MR volumetric data in standardized Talairach space. J. Comput. Assist. Tomogr. 18, 192–205 (1994)
    Article CAS PubMed Google Scholar
  25. Sled, J. G., Zijdenbos, A. P. & Evans, A. C. A nonparametric method for automatic correction of intensity nonuniformity in MRI data. IEEE Trans. Med. Imaging 17, 87–97 (1998)
    Article CAS PubMed Google Scholar
  26. Zijdenbos, A. P., Forghani, R. & Evans, A. C. Automatic “pipeline” analysis of 3-D MRI data for clinical trials: application to multiple sclerosis. IEEE Trans. Med. Imaging 21, 1280–1291 (2002)
    Article PubMed Google Scholar
  27. MacDonald, D., Kabani, N., Avis, D. & Evans, A. C. Automated 3-D extraction of inner and outer surfaces of cerebral cortex from MRI. Neuroimage 12, 340–356 (2000)
    Article CAS PubMed Google Scholar
  28. Benjamini, Y. & Hochberg, Y. Controlling the false discovery rate: a practical and powerful approach to multiple testing. J. R. Stat. Soc. B 57, 289–300 (1995)
    MathSciNet MATH Google Scholar
  29. Pinheiro, J. C. & Bates, D. M. Mixed-effects Models in S and S-PLUS (Springer, New York, 2000)
    Book Google Scholar
  30. Genovese, C. R., Lazar, N. A. & Nichols, T. Thresholding of statistical maps in functional neuroimaging using the false discovery rate. Neuroimage 15, 870–878 (2002)
    Article PubMed Google Scholar

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