REFERENCES

1. Bolognini N, Pascual-Leone A, Fregni F. Using non-invasive brain stimulation to augment motor training-induced plasticity. J Neuroeng Rehabil 2009;6:8.

2. Devlin JT, Watkins KE. Stimulating language: insights from TMS. Brain 2007;130:610-22.

3. Jahanshahi M, Rothwell J. Transcranial magnetic stimulation studies of cognition: an emerging field. Exp Brain Res 2000;131:1-9.

4. Pascual-Leone A, Walsh V, Rothwell J. Transcranial magnetic stimulation in cognitive neuroscience-virtual lesion, chronometry, and functional connectivity. Curr Opin Neurobiol 2000;10:232-7.

5. Barker AT, Jalinous R, Freeston IL. Non-invasive magnetic stimulation of human motor cortex. Lancet 1985;1:1106-7.

6. Barker AT, Freestone IL, Jalinous R, Merton PA, Morton HB. Magnetic stimulation of the human brain. J Physiol 1985;369:3P.

7. Pascual-Leone A, Bartres-Faz D, Keenan JP. Transcranial magnetic stimulation: studying the brain-behaviour relationship by induction of 'virtual lesions'. Philos Trans R Soc Lond B Biol Sci 1999;354:1229-38.

8. McCann UD, Kimbrell TA, Morgan CM, Anderson T, Geraci M, Benson BE, Wassermann EM, Willis MW, Post RM. Repetitive transcranial magnetic stimulation for posttraumatic stress disorder. Arch Gen Psychiatry 1998;55:276-9.

9. Pascual-Leone A, Valls-Solé J, Wassermann EM, Hallett M. Responses to rapid-rate transcranial magnetic stimulation of the human motor cortex. Brain 1994;117:847-58.

10. Pascual-Leone A, Rubio B, Pallardó F, Catalá MD. Rapid-rate transcranial magnetic stimulation of left dorsolateral prefrontal cortex in drug-resistant depression. Lancet 1996;348:233-7.

11. Zimerman M, Hummel FC. Non-invasive brain stimulation: enhancing motor and cognitive functions in healthy old subjects. Front Aging Neurosci 2010;2:149.

12. Freitas C, Farzan F, Pascual-Leone A. Assessing brain plasticity across the lifespan with transcranial magnetic stimulation: why, how, and what is the ultimate goal? Front Neurosci 2013;7:42.

13. Hamada M, Ugawa Y, Tsuji S, Effectiveness of rTMS on Parkinson's Disease Study Group, Japan. High-frequency rTMS over the supplementary motor area improves bradykinesia in Parkinson's disease: subanalysis of double-blind sham-controlled study. J Neurol Sci 2009;287:143-6.

14. Pascual-Leone A, Gates JR, Dhuna A. Induction of speech arrest and counting errors with rapid-rate transcranial magnetic stimulation. Neurology 1991;41:697-702.

15. Wada J, Rasmussen T. Intracarotid injection of sodium amytal for the lateralization of cerebral speech dominance: experimental and clinical observations. J Neurosurg 1960;17:266-82.

16. Loddenkemper T, Morris HH, Möddel G. Complications during the Wada test. Epilepsy Behav 2008;13:551-3.

17. Rösler J, Niraula B, Strack V, Zdunczyk A, Schilt S, Savolainen P, Lioumis P, Makela J, Vajkoczy P, Frey D, Picht T. Language mapping in healthy volunteers and brain tumor patients with a novel navigated TMS system: evidence of tumor-induced plasticity. Clin Neurophysiol 2014;125:526-36.

18. Epstein CM. Transcranial magnetic stimulation: language function. J Clin Neurophysiol 1998;15:325-32.

19. Broca P. New observation of aphemia caused by a lesion of the posterior half of the second and third left frontal convolutions. Bull Soc Anat Paris 1861;6:398-407.

20. Wernicke C. Der aphasische Symptomenkomplex. Breslau: Cohn and Weigert; 1874.

21. Mugnaini D, Lassi S, La Malfa G, Albertini G. Internalizing correlates of dyslexia. World J Pediatr 2009;5:255-64.

22. Cogo-Moreira H, Andriolo RB, Yazigi L, Ploubidis GB, Brandão de Ávila CR, Mari JJ. Music education for improving reading skills in children and adolescents with dyslexia. Cochrane Database Syst Rev 2012;8:CD009133.

23. Lopes J. Biologising reading problems: the specific case of dyslexia. Contemp Soc Sci 2012;7:215-29.

24. de Beer J, Engels J, Heerkens Y, van der Klink J. Factors influencing work participation of adults with developmental dyslexia: a systematic review. BMC Public Health 2014;14:77.

25. Young AW. Methodological and theoretical bases of visual hemifield studies. In: Beaumont JG, editor. Divided Visual Field Studies of Cerebral Organization. London: Academic Press; 1982.

26. Ellis AW, Young AW, Anderson C. Modes of word recognition in the left and right cerebral hemispheres. Brain Lang 1988;35:254-73.

27. Skarratt PA, Lavidor M. Magnetic stimulation of the left visual cortex impairs expert word recognition. J Cogn Neurosci 2006;18:1749-58.

28. Ellis AW, Brooks J, Lavidor M. Evaluating a split fovea model of visual word recognition: effects of case alternation in the two visual fields and in the left and right halves of words presented at the fovea. Neuropsychologia 2005;43:1128-37.

29. Lavidor M, Hayes A, Shillcock R, Ellis AW. Evaluating a split processing model of visual word recognition: effects of orthographic neighborhood size. Brain Lang 2004;88:312-20.

30. Ellis AW, Brysbaert M. Split fovea theory and the role of the two cerebral hemispheres in reading: a review of the evidence. Neuropsychologia 2010;48:353-65.

31. Brysbaert M. The importance of interhemispheric transfer for foveal vision: a factor that has been overlooked in theories of visual word recognition and object perception. Brain Lang 2004;88:259-67.

32. Hsiao JH, Shillcock R, Lavidor M. A TMS examination of semantic radical combinability effects in Chinese character recognition. Brain Res 2006;1078:159-67.

33. Stoeckel C, Gough PM, Watkins KE, Devlin JT. Supramarginal gyrus involvement in visual word recognition. Cortex 2009;45:1091-6.

34. Price CJ, Moore CJ, Humphreys GW, Wise RJ. Segregating semantic from phonological processes during reading. J Cogn Neurosci 1997;9:727-33.

35. Nakamura K, Hara N, Kouider S, Takayama Y, Hanajima R, Sakai K, Ugawa Y. Task-guided selection of the dual neural pathways for reading. Neuron 2006;52:557-64.

36. Tomasino B, Fink GR, Sparing R, Dafotakis M, Weiss PH. Action verbs and the primary motor cortex: a comparative TMS study of silent reading, frequency judgments, and motor imagery. Neuropsychologia 2008;46:1915-26.

37. Hoffman P, Jefferies E, Lambon Ralph MA. Ventrolateral prefrontal cortex plays an executive regulation role in comprehension of abstract words: convergent neuropsychological and repetitive TMS evidence. J Neurosci 2010;30:15450-6.

38. Binder JR, Desai RH, Graves WW, Conant LL. Where is the semantic system? A critical review and meta-analysis of 120 functional neuroimaging studies. Cereb Cortex 2009;19:2767-96.

39. Manenti R, Cappa SF, Rossini PM, Miniussi C. The role of the prefrontal cortex in sentence comprehension: an rTMS study. Cortex 2008;44:337-44.

40. Caplan D, Vijayan S, Kuperberg G, West C, Waters G, Greve D, Dale AM. Vascular responses to syntactic processing: event-related fMRI study of relative clauses. Hum Brain Mapp 2002;15:26-38.

41. Hashimoto R, Sakai KL. Specialization in the left prefrontal cortex for sentence comprehension. Neuron 2002;35:589-97.

42. Cacciari C, Bolognini N, Senna I, Pellicciari MC, Miniussi C, Papagno C. Literal, fictive and metaphorical motion sentences preserve the motion component of the verb: a TMS study. Brain Lang 2011;119:149-57.

43. Scorolli C, Jacquet PO, Binkofski F, Nicoletti R, Tessari A, Borghi AM. Abstract and concrete phrases processing differentially modulates cortico-spinal excitability. Brain Res 2012;1488:60-71.

44. Acheson DJ, Hagoort P. Stimulating the brain's language network: syntactic ambiguity resolution after TMS to the inferior frontal gyrus and middle temporal gyrus. J Cogn Neurosci 2013;25:1664-77.

45. Goswami U. Sensory theories of developmental dyslexia: three challenges for research. Nat Rev Neurosci 2015;16:43-54.

46. Nelson JM, Lindstrom W, Foels PA. Test anxiety among college students with specific reading disability (Dyslexia): nonverbal ability and working memory as predictors. J Learn Disabil 2015;48:422-32.

47. Hadzibeganovic T, van den Noort M, Bosch P, Perc M, van Kralingen R, Mondt K, Coltheart M. Cross-linguistic neuroimaging and dyslexia: a critical view. Cortex 2010;46:1312-6.

48. Siegel LS. Perspectives on dyslexia. Paediatr Child Health 2006;11:581-7.

49. Boets B, Op de Beeck HP, Vandermosten M, Scott SK, Gillebert CR, Mantini D, Bulthe J, Sunaert S, Wouters J, Ghesquiere P. Intact but less accessible phonetic representations in adults with dyslexia. Science 2013;342:1251-4.

50. Bruck M. Word-recognition skills of adults with childhood diagnoses of dyslexia. Dev Psychol 1990;26:439-54.

51. Shaywitz SE, Fletcher JM, Holahan JM, Shneider AE, Marchione KE, Stuebing KK, Francis DJ, Pugh KR, Shaywitz BA. Persistence of dyslexia: the Connecticut Longitudinal Study at adolescence. Pediatrics 1999;104:1351-9.

52. Shaywitz SE. Dyslexia. N Engl J Med 1998;338:307-12.

53. Habib M, Giraud K. Dyslexia. Handb Clin Neurol 2013;111:229-35.

54. Joly-Pottuz B, Mercier M, Leynaud A, Habib M. Combined auditory and articulatory training improves phonological deficit in children with dyslexia. Neuropsychol Rehabil 2008;18:402-29.

55. Coslett HB, Monsul N. Reading with the right hemisphere: evidence from transcranial magnetic stimulation. Brain Lang 1994;46:198-211.

56. Frye RE, Rotenberg A, Ousley M, Pascual-Leone A. Transcranial magnetic stimulation in child neurology: current and future directions. J Child Neurol 2008;23:79-96.

57. Hoeft F, McCandliss BD, Black JM, Gantman A, Zakerani N, Hulme C, Lyytinen H, Whitfield-Gabrieli S, Glover GH, Reiss AL, Gabrieli JD. Neural systems predicting long-term outcome in dyslexia. Proc Natl Acad Sci U S A 2011;108:361-6.

58. Costanzo F, Menghini D, Caltagirone C, Oliveri M, Vicari S. How to improve reading skills in dyslexics: the effect of high frequency rTMS. Neuropsychologia 2013;51:2953-9.

59. Costanzo F, Menghini D, Caltagirone C, Oliveri M, Vicari S. High frequency rTMS over the left parietal lobule increases non-word reading accuracy. Neuropsychologia 2012;50:2645-51.

60. Gutchess A. Plasticity of the aging brain: new directions in cognitive neuroscience. Science 2014;346:579-82.

61. van den Noort M, Lim S, Bosch P. Recognizing the risks of brain stimulation. Science 2014;346:1307.

62. Thut G, Pascual-Leone A. Integrating TMS with EEG: how and what for? Brain Topogr 2010;22:215-8.

63. Miniussi C, Thut G. Combining TMS and EEG offers new prospects in cognitive neuroscience. Brain Topogr 2010;22:249-56.

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