1) Bruer JT: Avoiding the pediatrician's error: how neuroscientists can help educators. Nat Neurosci 5: 1031-1033, 2002
2) Bruer JT: Education and the brain: a bridge too far. Educational Researcher 26: 1-13, 1997
3) Fu CH, Williams SC, Cleare AJ, Brammer MJ, Walsh ND, et al: Attenuation of the neural response to sad faces in major depression by antidepressant treatment: a prospective, event-related functional magnetic resonance imaging study. Arch Gen Psychiatry 61: 877-889, 2004
4) Sheline YI, Barch DM, Donnelly JM, Ollinger JM, Snyder AZ, et al: Increased amygdala response to masked emotional faces in depressed subjects resolves with antidepressant treatment: an fMRI study. Biol Psychiatry 50: 651-658, 2001
5) Davidson RJ, Irwin W, Anderle MJ, Kalin NH: The neural substrates of affective processing in depressed patients treated with venlafaxine. Am J Psychiatry 160: 64-75, 2003
6) Schaefer HS, Putnam KM, Benca RM, Davidson RJ: Event-related functional magnetic resonance imaging measures of neural activity to positive social stimuli in pre- and post-treatment depression. Biol Psychiatry 60: 974-986, 2006
7) Rauch SL: Neuroimaging research and the neurobiology of obsessive compulsive disorder: Where do we go from here? Biol Psychiatry 47: 168-170, 2000
8) Saxena S, Brody AL, Schwartz JM, Baxter LR: Neuroimaging and frontal-subcortical circuitry in obsessive-compulsive disorder. Brit J Psychiatry (Suppl) 35: 26-37, 1998
9) Saxena S, Brody AL, Maidment KM, Dunkin JJ, Colgan M, et al: Localized orbitofrontal and subcortical metabolic changes and predictors of response to paroxetine treatment in obsessive-compulsive disorder. Neuropsychopharmacology 21: 683-693, 1999
10) Rauch SL, Shin LM, Dougherty DD, Alpert NM, Fischman AJ, et al: Predictors of fluvoxamine response in contamination-related obsessive compulsive disorder: a PET symptom provocation study. Neuropsychopharmacology 27: 782-791, 2002
11) Kapur S, Zipursky RB, Remington G: Clinical and theoretical implications of 5-HT2 and D2 receptor occupancy of clozapine, risperidone, and olanzapine in schizophrenia. Am J Psychiatry 156: 286-293, 1999
12) Erritzoe D, Talbot P, Frankle WG, Abi-Dargham A: Positron emission tomography and single photon emission CT molecular imaging in schizophrenia. Neuroimaging Clin N Am 13: 817-832, 2003
13) Kapur S, Zipursky R, Jones C: Relationship between dopamine D(2) occupancy, clinical response, and side effects: a double-blind PET study of first-episode schizophrenia. Am J Psychiatry 157: 514-520, 2000
14) Wolkin A, Barouche F, Wolf AP, Rotrosen J, Fowler JS, et al: Dopamine blockade and clinical response: evidence for two biological subgroups of schizophrenia. Am J Psychiatry 146: 905-908, 1989
15) Nyberg S, Farde L, Halldin C, Dahl ML, Bertilsson L: D2 dopamine receptor occupancy during low-dose treatment with haloperidol decanoate. Am J Psychiatry 152: 173-178, 1995
16) Kim BN, Lee JS, Cho SC, Lee DS: Methylphenidate increased regional cerebral blood flow in subjects with attention deficit/hyperactivity disorder. Yonsei Med J 42: 19-29, 2001
17) Langleben DD, Acton PD, Austin G, Elman I, Krikorian G, et al: Effects of methylphenidate discontinuation on cerebral blood flow in prepubescent boys with attention deficit hyperactivity disorder. J Nucl Med 43: 1624-1629, 2002
18) Hewitt KN, Shah YB, Prior MJ, Morris PG, Hollis CP, et al: Behavioural and pharmacological magnetic resonance imaging assessment of the effects of methylphenidate in a potential new rat model of attention deficit hyperactivity disorder. Psychopharmacology 180: 716-723, 2005
19) Wang GJ, Volkow ND, Fowler JS, Ferrieri R, Schlyer DJ, et al: Methylphenidate decreases regional cerebral blood flow in normal human subjects. Life Sci 54: 143-146, 1994
20) Vaidya CJ, Austin G, Kirkorian G, Ridlehuber HW, Desmond JE, et al: Selective effects of methylphenidate in attention deficit hyperactivity disorder: a functional magnetic resonance study. Proc Natl Acad Sci U S A 95: 14494-14499, 1998
21) Schweitzer JB, Lee DO, Hanford RB, Zink CF, Ely TD, et al: Effect of methylphenidate on executive functioning in adults with attention-deficit/hyperactivity disorder: normalization of behavior but not related brain activity. Biol Psychiatry 56: 597-606, 2004
22) Richardson MP, Strange BA, Thompson PJ, Baxendale SA, Duncan JS, et al: Pre-operative verbal memory fMRI predicts post-operative memory decline after left temporal lobe resection. Brain 127: 2419-2426, 2004
23) Apostolova LG, Dutton RA, Dinov ID, Hayashi KM, Toga AW, et al: Conversion of mild cognitive impairment to Alzheimer disease predicted by hippocampal atrophy maps. Arch Neurol 63: 693-699, 2006
24) Price CJ, Mechelli A: Reading and reading disturbance. Curr Opin Neurobiol 15: 231-238, 2005
25) Demonet JF, Taylor MJ, Chaix Y: Developmental dyslexia. Lancet 363: 1451-1460, 2004
26) Habib M: The neurological basis of developmental dyslexia: an overview and working hypothesis. Brain 123 Pt 12: 2373-2399, 2000
27) Shaywitz SE, Shaywitz BA: Dyslexia (specific reading disability). Biol Psychiatry 57: 1301-1309, 2005
28) Turkeltaub PE, Eden GF, Jones KM, Zeffiro TA: Meta-analysis of the functional neuroanatomy of single-word reading: method and validation: Neuroimage 16 (3 Pt 1): 765-780, 2002
29) Shaywitz BA, Shaywitz SE, Pugh KR, Mencl WE, Fulbright RK, et al: Disruption of posterior brain systems for reading in children with developmental dyslexia. Biol Psychiatry 52: 101-110, 2002
30) Shaywitz SE, Shaywitz BA, Pugh KR, Fulbright RK, Constable RT, et al: Functional disruption in the organization of the brain for reading in dyslexia. Proc Natl Acad Sci USA 95: 2636-2641, 1998
31) Temple E, Poldrack RA, Protopapas A, Nagarajan S, Salz T, et al: Disruption of the neural response to rapid acoustic stimuli in dyslexia: evidence from functional MRI. Proc Natl Acad Sci USA 97: 13907-13912, 2000
32) Hoeft F, Hernandez A, McMillon G, Taylor-Hill H, Martindale JL, et al: Neural basis of dyslexia: A comparison between dyslexic and non-dyslexic chil-dren equated for reading ability. J Neurosci 26: 10700-10708, 2006
33) Hoeft F, Meyler A, Hernandez A, Juel C, Taylor-Hill H, et al.: Functional and morphometric brain dissociation between dyslexia and reading ability. Proc Natl Acad Sci USA 104: 4234-4239, 2007.
34) Aylward EH, Richards TL, Berninger VW, Nagy WE, Field KM, et al: Instructional treatment associated with changes in brain activation in children with dyslexia. Neurology 61: 212-219, 2003
35) Eden GF, Jones KM, Cappell K, Gareau L, Wood FB, et al: Neural changes following remediation in adult developmental dyslexia. Neuron 44: 411-422, 2004
36) Shaywitz BA, Shaywitz SE, Blachman BA, Pugh KR, Fulbright RK, et al: Development of left occipitotemporal systems for skilled reading in children after a phonologically- based intervention. Biol Psychiatry 55: 926-933, 2004
37) Temple E, Deutsch GK, Poldrack RA, Miller SL, Tallal P, et al: Neural deficits in children with dyslexia ameliorated by behavioral remediation: evidence from functional MRI. Proc Natl Acad Sci USA 100: 2860-2865, 2003
38) Adams MJ: Beginning to read: Thinking and learning about print. MIT Press, Cambridge, 1990
39) Snow CE, Burns SM: Preventing reading difficulties in young children. (Griffin P), National Academy Press, Washington DC, 1998
40) Gantman A, Wittenberg D, Hoeft F: Novel methods to predict outcome using neuroimaging (Review). Psychiatric Times 13: 75-83, 2006
41) Hoeft F, Ueno T, Reiss AL, Meyler A, Whitfield-Gabrieli S, et al: Prediction of children's reading skills using behavioral, functional and structural neuroimaging measures. Behav Neurosci 121: 602-613, 2007
42) Kobayashi N, Meyler A, Keller TA, Ueno T, Ojo R, et al: Neuroimaging measures can prospectively predict future reading skills (abstract). Proceedings for the Society for Neuroscience 2006