Page 55 - TI Journal 18-1
P. 55
EVALUATION OF NEUROMODULATION USING MRI 49
default mode of brain function. Proc. Natl. Acad. Taylor, P. C.; Ilmoniemi, R. J.; De Gennaro, L.;
Sci. U.S.A. 98(2):676-682; 2001. Strafella, A. P.; Kähkönen, S.; Klöppel, S.; Frisoni,
67. Reis, J.; Robertson, E.; Krakauer, J. W.; Rothwell, G. B.; George, M. S.; Hallett, M.; Brandt, S. A.;
J.; Marshall, L.; Gerloff, C.; Wassermann, E.; Rushworth, M. F.; Ziemann, U.; Rothwell, J. C.;
Pascual-Leone, A.; Hummel, F.; Celnik, P. A.; Ward, N.; Cohen, L. G.; Baudewig, J.; Paus, T.;
Classen, J.; Floel, A.; Ziemann, U.; Paulus, W.; Ugawa, Y.; Rossini, P. M. Consensus paper:
Siebner, H. R.; Born, J.; Cohen, L. G. Consensus: combining transcranial stimulation with neu-
“can tDCS and TMS enhance motor learning and roimaging. Brain Stimul. 2(2):58-80; 2009.
memory formation?” Brain Stimul. 1(4):363- 76. Stagg, C. J.; Best, J. G.; Stephenson, M. C.;
369; 2008. O’Shea, J.; Wylezinska, M.; Kincses, Z. T.;
68. Saiote, C.; Turi, Z.; Paulus, W.; Antal, A. Morris, P. G.; Matthews, P. M.; Johansen-Berg,
Combining functional magnetic resonance imag- H. Polarity-sensitive modulation of cortical
ing with transcranial electrical stimulation. Front. neurotransmitters by transcranial stimulation. J.
Hum. Neurosci. 7; 2013. Neurosci. 29(16):5202-5206; 2009.
69. Sale, M. V.; Mattingley, J. B.; Zalesky, A.; Cocchi, 77. Stagg, C. J.; Nitsche, M. A. Physiological
L. Imaging human brain networks to improve the basis of transcranial direct current stimula-
clinical efficacy of non-invasive brain stimula- tion. Neuroscientist 17(1):37-53; 2011.
tion. Neurosci. Biobehav. Rev. 57:187-198; 2015. 78. Stagg, C. J.; Johansen-Berg, H. Studying the
70. Sauvaget, A.; Trojak, B.; Bulteau, S.; Jiménez- effects of transcranial direct-current stimulation
Murcia, S.; Fernández-Aranda, F.; Wolz, I.; in stroke recovery using magnetic resonance
Menchón, J. M.; Achab, S.; Vanelle, J. M.; imaging. Front. Hum. Neurosci. 7; 2013.
Grall-Bronnec, M. Transcranial direct current 79. Strafella, A. P.; Paus, T.; Barrett, J.; Dagher,
stimulation (tDCS) in behavioral and food A. Repetitive transcranial magnetic stimulation
addiction: a systematic review of efficacy, tech- of the human prefrontal cortex induces dopa-
nical, and methodological issues. Front. Neurosci. mine release in the caudate nucleus. J. Neurosci.
9:349; 2015. 21(15):RC157; 2001.
71. Schmidt, R.; Seiler, S.; Loitfelder, M. Longitudinal 80. Summers, J. J.; Kang, N.; Cauraugh, J. H. Does
change of small-vessel disease–related brain transcranial direct current stimulation enhance
abnormalities. J. Cereb. Blood Flow Metab. 36(1): cognitive and motor functions in the ageing
26-39; 2016. brain? A systematic review and meta- analy-
72. Schmitt, R.; Capo, T.; Boyd, E. Cranial electro- sis. Ageing Res. Rev. 25:42-54; 2016.
therapy stimulation as a treatment for anxiety 81. Tayeb, Y.; Lavidor, M. Enhancing switching abili-
in chemically dependent persons. Alcohol Clin. ties: Improving practice effect by stimulating the
Exp. Res. 10(2):158-160; 1986. dorsolateral pre frontal cortex. Neuroscience.
73. Schroeder, M. J.; Barr, R. E. Quantitative analy- 313:92-98; 2016.
sis of the electroencephalogram during cranial 82. Teipel, S. J.; Grothe, M.; Lista, S.; Toschi, N.;
electrotherapy stimulation. Clin. Neurophysiol. Garaci, F. G.; Hampel, H. Relevance of mag-
112(11):2075-2083; 2001. netic resonance imaging for early detection and
74. Siebner, H. R.; Rothwell, J. Transcranial magnetic diagnosis of Alzheimer disease. Med. Clin. North
stimulation: new insights into representational Am. 97(3):399-424; 2013.
cortical plasticity. Exp. Brain Res. 148(1):1-16; 83. Truong, T. K.; Guidon, A.; Song, A. W. Cortical
2003. depth dependence of the diffusion anisotropy
75. Siebner, H. R.; Bergmann, T. O.; Bestmann, S.; in the human cortical gray matter in vivo. PLoS
Massimini, M.; Johansen-Berg, H.; Mochizuki, One 9(3); 2014.
H.; Bohning, D. E.; Boorman, E. D.; Groppa. 84. Vértes, P. E.; Bullmore, E. T. Annual research
S.; Miniussi, C.; Pascual-Leone, A.; Huber, R.; review: growth connectomics–the organization

