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Research Publications
Reading: Brain Imaging
- Turkeltaub, P. E., Gareau, L., Flowers, D. L., Zeffiro, T. A., Eden, G. F. (2003). Development of neural mechanisms for reading. Nature Neuroscience, 6(7):767-73.
- Flowers D.L., Jones K., Noble K., VanMeter J.W., Zeffiro T.A., Wood F.B., Eden G.F. (2004). Attention to single letters activates left extrastriate cortex. NeuroImage, 21(3), 829-839.
Developmental Dyslexia: Behavioral Studies
- Eden, G. F., J. F. Stein, H. M. Wood and F. B. Wood (1994). Differences in eye movements and reading problems in dyslexic and normal children. Vision Research 34(10): 1345-58.
- Eden, G.F., Stein, J.F., Wood, H.M., Wood, F.B. (1995). Verbal and visual problems in reading disabled and normal children. Journal of Learning Disabilities, 28(5), 272-290.
- Eden, G.F., Stein, J.F., Wood, H.M., Wood, F.B. (1995). Temporal and spatial processing in reading disabled and normal children. Cortex, 31, 451-468.
- Eden, G.F., Stein, J.F., Wood, H.M., Wood, F.B. (2003). Clock drawing in reading disabled children. Journal of Learning Disabilities, 36,3, 216-228.
- Maisog, J. M., Flowers, D. L., Eden, G. F. (2006). Classification of fMRI Data Acquired in Individuals With and Without Dyslexia: Comparison of Decision Tree Method and Linear Discriminant Analysis. Poster presented at the Human Brain Mapping meeting, June 11-15, 2006, Florence, Italy.
Developmental Dyslexia: Brain Imaging
- Eden, G.F., VanMeter, J.W., Rumsey, J.W., Maisog, J. and T.A. Zeffiro, (1996). Abnormal processing of visual motion in dyslexia revealed by functional brain imaging. Nature, 382, 66-69.
- Eden, G.F., Zeffiro, T.A. (1998). Neural mechanisms affected in developmental dyslexia revealed by functional neuroimaging. Neuron, 21, 279-282.
- Maisog, J.M., Einbinder, E., Flowers, D.L., Turkeltaub,P.E., Eden,G.F. (2005). Meta-Analysis of Functional Neuroimaging Studies of Dyslexics and Normal Readers. Poster presented at the Society for Neurosciences meeting, November 12-16, 2005, Washington DC.
Developmental Dyslexia: Reading Intervention
Attention Deficit Hyperactivity Disorder: Brain Imaging
- Vaidya, C. J. (2002). Application of pharmacological fMRI to developmental psychiatric disorders. Developmental Science, 5(3), 310-317.
- Vaidya, C. J. & Gabrieli, J. D. E. (1999). Searching for a neurobiological signature of Attention Deficit Hyperactivity Disorder. Molecular Psychiatry, 4, 206-208.
- Vaidya, C. J., Austin, G., Kirkorian, G., Ridlehuber, H. W., Desmond, J.E.,Glover, G. H., & Gabrieli, J. D. E. (1998). Selective effects of methylphenidate in Attention Deficit Hyperactivity Disorder: A functional magnetic resonance study. Proceedings of the National Academy of Sciences, 95, 14494-14499.
Social Perception
- Haxby, J; Hoffman, E; Gobbini, M. (2000). The distributed human neural system for face perception. Trends in Cognitive Sciences, 4,223-233.
- Hoffman, E; Haxby, J. (2000). Distinct representations of eye gaze and identity in the distributed human neural system for face perception. Nature Neuroscience, 3, 80-84.
- Haxby, J; Hoffman, E; Gobbini, M. (2002). Human neural systems for face recognition and social communication. Biological Psychiatry, 51 (1), 59-67.
Hyperlexia: Brain Imaging
Sensorimotor Systems: Brain Imaging
Brain Imaging: Methodological Issues
- Zeffiro, T.A., Eden, G.F., Woods, R.P., VanMeter, J.W. (1997). Intersubject analysis of fMRI data using spatial normalization. Advances in Experimental Medicine and Biology, 413, 235-240.
- Eden, G.F., Joseph, J.E., Brown, H.E., Brown, C.P., Zeffiro, T.A. (1999). Utilizing hemodynamic delay and dispersion to detect fMRI signal change without auditory interference: the Behavioral Interleaved Gradients Technique. Magnetic Resonance in Medicine, 41(1), 13-20.
- Turkeltaub, P. E., G. F. Eden, K. M. Jones and T. A. Zeffiro (2002). Meta-analysis of the functional neuroanatomy of single-word reading: method and validation. Neuroimage 16(3 Pt 1): 765-80.
- Lin, F-H, A.R. McIntosh; J. Agnew, G.F. Eden, T.A. Zeffiro and J.W. Belliveau (2003). Multivariate analysis of neuronal interactions in the generalized partial least squares framework: Simulations and empirical studies. Neuroimage, 20(2):625-42
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