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Erschienen in: Experimental Brain Research 2/2010

01.06.2010 | Research Article

The effect of cortical repetitive transcranial magnetic stimulation on cognitive event-related potentials recorded in the subthalamic nucleus

verfasst von: M. Baláž, H. Srovnalová, I. Rektorová, I. Rektor

Erschienen in: Experimental Brain Research | Ausgabe 2/2010

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Abstract

We studied whether the cognitive event-related potentials (ERP) in the subthalamic nucleus (STN) are modified by the modulation of the inferior frontal cortex (IFC) and the dorsolateral prefrontal cortex (DLPFC) with repetitive transcranial magnetic stimulation (rTMS). Eighteen patients with Parkinson’s disease who had been implanted with a deep brain stimulation (DBS) electrode were included in the study. The ERPs were recorded from the DBS electrode before and after the rTMS (1 Hz, 600 pulses) over either the right IFC (10 patients) or the right DLPFC (8 patients). The ERPs were generated by auditory stimuli. rTMS over the right IFC led to a shortening of ERP latencies from 277 ± 14 ms (SD) to 252 ± 19 ms in the standard protocol and from 296 ± 17 ms to 270 ± 20 ms in the protocol modified by a higher load of executive functions (both P < 0.01). The application of rTMS over the DLPFC and the sham stimulation over the IFC showed no significant changes. The shortening of ERP latency after rTMS over the right IFC reflected the increase in the speed of the cognitive process. The rTMS modulation of activity of the DLPFC did not influence the ERP. Connections (the IFC-STN hyperdirect pathway) with the cortex that bypass the BG-thalamocortical circuitries could explain the position of the STN in the processing of executive functions.
Literatur
Zurück zum Zitat Afsharpour S (1985) Topographical projections of the cerebral cortex to the subthalamic nucleus. J Comp Neurol 236:14–28CrossRefPubMed Afsharpour S (1985) Topographical projections of the cerebral cortex to the subthalamic nucleus. J Comp Neurol 236:14–28CrossRefPubMed
Zurück zum Zitat Albin RL, Young AB, Penny JB (1989) The functional anatomy of basal ganglia disorders. Trends Neurosci 12:366–375CrossRefPubMed Albin RL, Young AB, Penny JB (1989) The functional anatomy of basal ganglia disorders. Trends Neurosci 12:366–375CrossRefPubMed
Zurück zum Zitat Aravamuthan BR, Muthusamy KA, Stein JF, Aziz TZ, Johansen-Berg H (2007) Topography of cortical and subcortical connections of the human pedunculoopontine and subthalamic nuclei. NeuroImage 37:694–705CrossRefPubMed Aravamuthan BR, Muthusamy KA, Stein JF, Aziz TZ, Johansen-Berg H (2007) Topography of cortical and subcortical connections of the human pedunculoopontine and subthalamic nuclei. NeuroImage 37:694–705CrossRefPubMed
Zurück zum Zitat Aron AR, Poldrack RA (2006) Cortical and subcortical contributions to stop signal response inhibition: role of the subthalamic nucleus. J Neuorsci 26(9):2424–2433CrossRef Aron AR, Poldrack RA (2006) Cortical and subcortical contributions to stop signal response inhibition: role of the subthalamic nucleus. J Neuorsci 26(9):2424–2433CrossRef
Zurück zum Zitat Aron AR, Robbins TW, Poldrack RA (2004) Inhibition and the right inferior frontal cortex. Trends Cogn Sci 8(4):170–177CrossRefPubMed Aron AR, Robbins TW, Poldrack RA (2004) Inhibition and the right inferior frontal cortex. Trends Cogn Sci 8(4):170–177CrossRefPubMed
Zurück zum Zitat Baláz M, Rektor I, Pulkrábek J (2008) Participation of the subthalamic nucleus in executive functions: an intracerebral recording study. Mov Disord 23(4):553–557CrossRefPubMed Baláz M, Rektor I, Pulkrábek J (2008) Participation of the subthalamic nucleus in executive functions: an intracerebral recording study. Mov Disord 23(4):553–557CrossRefPubMed
Zurück zum Zitat Bares M, Rektor I, Kanovský P, Streitová H (2003) Cortical and subcortical distribution of middle and long latency auditory and visual evoked potentials in a cognitive (CNV) paradigm. Clin Neurophysiol 114(12):2447–2460CrossRefPubMed Bares M, Rektor I, Kanovský P, Streitová H (2003) Cortical and subcortical distribution of middle and long latency auditory and visual evoked potentials in a cognitive (CNV) paradigm. Clin Neurophysiol 114(12):2447–2460CrossRefPubMed
Zurück zum Zitat Barbas H, Henion TH, Dermon CR (1991) Diverse thalamic projections to the prefrontal cortex in the rhesus monkey. J Comp Neurol 313(1):65–94CrossRefPubMed Barbas H, Henion TH, Dermon CR (1991) Diverse thalamic projections to the prefrontal cortex in the rhesus monkey. J Comp Neurol 313(1):65–94CrossRefPubMed
Zurück zum Zitat Benazzouz A, Breit S, Koudsie A, Pollak P, Krack P, Benabid AL (2002) Intraoperative microrecordings of the subthalamic nucleus in Parkinson’s disease. Mov Disord 17(Suppl 3):S145–S149CrossRefPubMed Benazzouz A, Breit S, Koudsie A, Pollak P, Krack P, Benabid AL (2002) Intraoperative microrecordings of the subthalamic nucleus in Parkinson’s disease. Mov Disord 17(Suppl 3):S145–S149CrossRefPubMed
Zurück zum Zitat Berendse HW, Groenewegen HJ (1991) The connections of the medial part of the subthalamic nucleus in the rat: evidence for a parallel organisation. In: Bernardi G, Carpenter MB, DiChiara G, Morelli M, Stanzione P (eds) The basal ganglia III. Plenum, New York, pp 89–98 Berendse HW, Groenewegen HJ (1991) The connections of the medial part of the subthalamic nucleus in the rat: evidence for a parallel organisation. In: Bernardi G, Carpenter MB, DiChiara G, Morelli M, Stanzione P (eds) The basal ganglia III. Plenum, New York, pp 89–98
Zurück zum Zitat Bočková M, Chládek J, Jurák P, Halámek J (2008) The novelty P3 in the subthalamic nucleus. An intracerebral recording study. Mov Disord 23(Suppl 1):230 Bočková M, Chládek J, Jurák P, Halámek J (2008) The novelty P3 in the subthalamic nucleus. An intracerebral recording study. Mov Disord 23(Suppl 1):230
Zurück zum Zitat Boggio PS, Fregni F, Bermpohl F, Mansur CG, Rosa M, Rumi DO et al (2005) Effect of repetitive TMS and fluoxetine on cognitive function in patients with Parkinson’s disease and concurrent depression. Mov Disord 20(9):1178–1184CrossRefPubMed Boggio PS, Fregni F, Bermpohl F, Mansur CG, Rosa M, Rumi DO et al (2005) Effect of repetitive TMS and fluoxetine on cognitive function in patients with Parkinson’s disease and concurrent depression. Mov Disord 20(9):1178–1184CrossRefPubMed
Zurück zum Zitat Bolam JP, Magill JP, Bevan MD (2002) The functional organization of the basal ganglia: new insights from anatomical and physiological analyses. In: Nicholson LFB, Faull RLN (eds) The basal ganglia VII. Plenum, New York, pp 371–378 Bolam JP, Magill JP, Bevan MD (2002) The functional organization of the basal ganglia: new insights from anatomical and physiological analyses. In: Nicholson LFB, Faull RLN (eds) The basal ganglia VII. Plenum, New York, pp 371–378
Zurück zum Zitat Brunia CHM, Damen EJP (1988) Distribution of slow brain potentials related to motor preparation and stimulus anticipation in a time estimation task. Electroenceph Clin Neurophysiol 69:234–243CrossRefPubMed Brunia CHM, Damen EJP (1988) Distribution of slow brain potentials related to motor preparation and stimulus anticipation in a time estimation task. Electroenceph Clin Neurophysiol 69:234–243CrossRefPubMed
Zurück zum Zitat Canteras NS, Shammah-Lagnado SJ, Silva BA, Ricardo JA (1990) Afferent connections of the subthalamic nucleus: a combined retrograde and anterograde horseradish peroxidase study in the rat. Brain Res 513:43–59CrossRefPubMed Canteras NS, Shammah-Lagnado SJ, Silva BA, Ricardo JA (1990) Afferent connections of the subthalamic nucleus: a combined retrograde and anterograde horseradish peroxidase study in the rat. Brain Res 513:43–59CrossRefPubMed
Zurück zum Zitat Chudasama Y, Baunez C, Robbins TW (2003) Functional disconnection of the medial prefrontal cortex and subthalamic nucleus in attentional performance: evidence for corticosubthalamic interaction. J Neurosci 23(13):5477–5485PubMed Chudasama Y, Baunez C, Robbins TW (2003) Functional disconnection of the medial prefrontal cortex and subthalamic nucleus in attentional performance: evidence for corticosubthalamic interaction. J Neurosci 23(13):5477–5485PubMed
Zurück zum Zitat Croxson PL, Johansen-Berg H, Behrens TE, Robson MD, Pinsk MA, Gross CG, Richter W, Richter MC, Kastner S, Rushworth MF (2005) Quantitative investigation of connections of the prefrontal cortex in the human and macaque using probabilistic diffusion tractography. J Neurosci 28(39):8854–8866CrossRef Croxson PL, Johansen-Berg H, Behrens TE, Robson MD, Pinsk MA, Gross CG, Richter W, Richter MC, Kastner S, Rushworth MF (2005) Quantitative investigation of connections of the prefrontal cortex in the human and macaque using probabilistic diffusion tractography. J Neurosci 28(39):8854–8866CrossRef
Zurück zum Zitat del Olmo MF, Bello O, Cudeiro J (2007) Transcranial magnetic stimulation over dorsolateral prefrontal cortex in Parkinson’s disease. Clin Neurophysiol 118(1):131–139CrossRefPubMed del Olmo MF, Bello O, Cudeiro J (2007) Transcranial magnetic stimulation over dorsolateral prefrontal cortex in Parkinson’s disease. Clin Neurophysiol 118(1):131–139CrossRefPubMed
Zurück zum Zitat Evers S, Böckermann I, Nyhuis PW (2001) The impact of transcranial magnetic stimulation on cognitive processing: an event-related potential study. Neuroreport 12(13):2915–2918CrossRefPubMed Evers S, Böckermann I, Nyhuis PW (2001) The impact of transcranial magnetic stimulation on cognitive processing: an event-related potential study. Neuroreport 12(13):2915–2918CrossRefPubMed
Zurück zum Zitat Frank MJ, Samanta J, Moustafa AA, Sherman SJ (2007) Hold your horses: impulsivity, deep brain stimulation, and medication in parkinsonism. Science 23:318 5854, 1309-1312 Frank MJ, Samanta J, Moustafa AA, Sherman SJ (2007) Hold your horses: impulsivity, deep brain stimulation, and medication in parkinsonism. Science 23:318 5854, 1309-1312
Zurück zum Zitat García-Larrea L, Cézanne-Bert G (1998) P3, Positive slow wave and working memory load: a study on the functional correlates of slow wave activity. Electroencephalogr Clin Neurophysiol 108:260–273CrossRefPubMed García-Larrea L, Cézanne-Bert G (1998) P3, Positive slow wave and working memory load: a study on the functional correlates of slow wave activity. Electroencephalogr Clin Neurophysiol 108:260–273CrossRefPubMed
Zurück zum Zitat García-Larrea L, Broussolle E, Cézanne-Bert G, Mauguiere F (1997) P 300 and “frontal executive functions”: application of a dual-task paradigm in normal subjects and patients with Parkinson’s disease and progressive supranuclear palsy. Electroencephalogr Clin Neurophysiol 103:148 García-Larrea L, Broussolle E, Cézanne-Bert G, Mauguiere F (1997) P 300 and “frontal executive functions”: application of a dual-task paradigm in normal subjects and patients with Parkinson’s disease and progressive supranuclear palsy. Electroencephalogr Clin Neurophysiol 103:148
Zurück zum Zitat Gerschlager W, Siebner HR, Rothwell JC (2001a) Decreased corticospinal excitability after subthreshold 1 Hz rTMS over lateral premotor cortex. Neurology 57:449–455PubMed Gerschlager W, Siebner HR, Rothwell JC (2001a) Decreased corticospinal excitability after subthreshold 1 Hz rTMS over lateral premotor cortex. Neurology 57:449–455PubMed
Zurück zum Zitat Gerschlager W, Bloem BR, Alesch F, Lang W, Deecke L, Cunnington R (2001b) Bilateral subthalamic nucleus stimulation does not improve prolonged P300 latencies in Parkinson’s disease. J Neurol 248(4):285–289CrossRefPubMed Gerschlager W, Bloem BR, Alesch F, Lang W, Deecke L, Cunnington R (2001b) Bilateral subthalamic nucleus stimulation does not improve prolonged P300 latencies in Parkinson’s disease. J Neurol 248(4):285–289CrossRefPubMed
Zurück zum Zitat Hallett M, Chokroverty S (2005) Magnetic stimulation in clinical neurophysiology, 2nd edn. Butterworth-Heinemann, Philadelphia, pp 106–120 Hallett M, Chokroverty S (2005) Magnetic stimulation in clinical neurophysiology, 2nd edn. Butterworth-Heinemann, Philadelphia, pp 106–120
Zurück zum Zitat Hamani C, Saint-Cyr JA, Fraser J, Kaplitt M, Lozano A (2004) The subthalamic nucleus in the context of movement disorders. Brain 127:4–20CrossRefPubMed Hamani C, Saint-Cyr JA, Fraser J, Kaplitt M, Lozano A (2004) The subthalamic nucleus in the context of movement disorders. Brain 127:4–20CrossRefPubMed
Zurück zum Zitat Hoshi E (2006) Functional specialization within the dorsolateral prefrontal cortex : a review of anatomical and physiological studies of non-human primates. Neurosci Res 54(2):73–84CrossRefPubMed Hoshi E (2006) Functional specialization within the dorsolateral prefrontal cortex : a review of anatomical and physiological studies of non-human primates. Neurosci Res 54(2):73–84CrossRefPubMed
Zurück zum Zitat Ilinsky IA, Jouandet ML, Goldman-Rakic PS (1985) Organization of the nigrothalamocortical system in the rhesus monkey. J Comp Neurol 236(3):315–330CrossRefPubMed Ilinsky IA, Jouandet ML, Goldman-Rakic PS (1985) Organization of the nigrothalamocortical system in the rhesus monkey. J Comp Neurol 236(3):315–330CrossRefPubMed
Zurück zum Zitat Jahanshahi M, Ardouin CMA, Brown RG, Rothwell JC, Obeso J, Albanese A et al (2000) The impact of deep brain stimulation on executive function in Parkinson’s disease. Brain 123:1142–1154CrossRefPubMed Jahanshahi M, Ardouin CMA, Brown RG, Rothwell JC, Obeso J, Albanese A et al (2000) The impact of deep brain stimulation on executive function in Parkinson’s disease. Brain 123:1142–1154CrossRefPubMed
Zurück zum Zitat Jenkinson M, Smith S (2001) A global optimisation method for robust affine registration of brain images. Med Image Anal 5(2):143–156CrossRefPubMed Jenkinson M, Smith S (2001) A global optimisation method for robust affine registration of brain images. Med Image Anal 5(2):143–156CrossRefPubMed
Zurück zum Zitat Jing H, Takigawa M, Hamada K, Okamura H, Kawaika Y, Yonezawa T et al (2001) Effects of high frequency repetitive transcranial magnetic stimulation on P300 event-related potential. Clin Neurophysiol 112:304–313CrossRefPubMed Jing H, Takigawa M, Hamada K, Okamura H, Kawaika Y, Yonezawa T et al (2001) Effects of high frequency repetitive transcranial magnetic stimulation on P300 event-related potential. Clin Neurophysiol 112:304–313CrossRefPubMed
Zurück zum Zitat Kaffenberger T, Baumgartner T, Koeneke S, Jäncke L, Herwig U (2008) Chronometric features of processing unpleasant stimuli: a functional MRI-based transcranial magnetic stimulation study. Neuroreport 19(7):777–781CrossRefPubMed Kaffenberger T, Baumgartner T, Koeneke S, Jäncke L, Herwig U (2008) Chronometric features of processing unpleasant stimuli: a functional MRI-based transcranial magnetic stimulation study. Neuroreport 19(7):777–781CrossRefPubMed
Zurück zum Zitat Kitai ST, Deniau JM (1981) Cortical inputs to the subthalamic nucleus: intracellular analysis. Brain Res 214:411–415CrossRefPubMed Kitai ST, Deniau JM (1981) Cortical inputs to the subthalamic nucleus: intracellular analysis. Brain Res 214:411–415CrossRefPubMed
Zurück zum Zitat Kolomiets BP, Deniau JM, Mailly P, Ménétrey A, Glowinski J, Thierry AM (2001) Segregation and convergence of information flow through the cortico-subthalamic pathways. J Neurosci 21(15):5764–5772PubMed Kolomiets BP, Deniau JM, Mailly P, Ménétrey A, Glowinski J, Thierry AM (2001) Segregation and convergence of information flow through the cortico-subthalamic pathways. J Neurosci 21(15):5764–5772PubMed
Zurück zum Zitat Krack P, Batir A, Van Blercom N, Chabardes S, Fraix V, Ardouin C, Koudsie A, Limousin PD, Benazzouz A, LeBas JF, Benabid AL, Pollak P (2003) Five-year follow-up of bilateral stimulation of the subthalamic nucleus in advanced Parkinson’s disease. N Engl J Med 349:1925–1934CrossRefPubMed Krack P, Batir A, Van Blercom N, Chabardes S, Fraix V, Ardouin C, Koudsie A, Limousin PD, Benazzouz A, LeBas JF, Benabid AL, Pollak P (2003) Five-year follow-up of bilateral stimulation of the subthalamic nucleus in advanced Parkinson’s disease. N Engl J Med 349:1925–1934CrossRefPubMed
Zurück zum Zitat Lanotte MM, Rizzone M, Bergamasco B, Faccani G, Melcarne A, Lopiano L (2002) Deep brain stimulation of the subthalamic nucleus: anatomical, neurophysiological, and outcome correlations with the effects of stimulation. J Neurol Neurosurg Psychiatry 72(1):53–58CrossRefPubMed Lanotte MM, Rizzone M, Bergamasco B, Faccani G, Melcarne A, Lopiano L (2002) Deep brain stimulation of the subthalamic nucleus: anatomical, neurophysiological, and outcome correlations with the effects of stimulation. J Neurol Neurosurg Psychiatry 72(1):53–58CrossRefPubMed
Zurück zum Zitat Maurice N, Deniau JM, Glowinski J, Thierry AM (1998) Relationships between the prefrontal cortex and the basal ganglia in the rat: physiology of the corticosubthalamic circuits. J Neurosci 18:9539–9546PubMed Maurice N, Deniau JM, Glowinski J, Thierry AM (1998) Relationships between the prefrontal cortex and the basal ganglia in the rat: physiology of the corticosubthalamic circuits. J Neurosci 18:9539–9546PubMed
Zurück zum Zitat Nambu A (2004) A new dynamic model of the cortico-basal ganglia loop. Progr Brain Res 134:461–466CrossRef Nambu A (2004) A new dynamic model of the cortico-basal ganglia loop. Progr Brain Res 134:461–466CrossRef
Zurück zum Zitat Nambu A, Tokuno H, Takada M (2002) Functional significance of the cortico-subthalamo-pallidal hyperdirect pathway. Neurosci Res 43(2):111–117CrossRefPubMed Nambu A, Tokuno H, Takada M (2002) Functional significance of the cortico-subthalamo-pallidal hyperdirect pathway. Neurosci Res 43(2):111–117CrossRefPubMed
Zurück zum Zitat Oishi M, Mochizuki Y, Hara M, Du C-M, Takasu T (1996) Effects of intravenous L-Dopa on P300 and regional cerebral blood flow in Parkinsonism. Int J Neurosci 85:147–154CrossRefPubMed Oishi M, Mochizuki Y, Hara M, Du C-M, Takasu T (1996) Effects of intravenous L-Dopa on P300 and regional cerebral blood flow in Parkinsonism. Int J Neurosci 85:147–154CrossRefPubMed
Zurück zum Zitat Okun MS, Fernandez HH, Wu SS, Kirsch-Darrow L, Bowers D, Bova F, Suelter M, Jacobson CE IV, Wang X, Gordon CW Jr, Zeilman P, Romrell J, Martin P, Ward H, Rodriguez RL, Foote KD (2009) Cognition and mood in Parkinson’s disease in subthalamic nucleus versus globus pallidus interna deep brain stimulation: the COMPARE trial. Ann Neurol 65(5):586–595CrossRefPubMed Okun MS, Fernandez HH, Wu SS, Kirsch-Darrow L, Bowers D, Bova F, Suelter M, Jacobson CE IV, Wang X, Gordon CW Jr, Zeilman P, Romrell J, Martin P, Ward H, Rodriguez RL, Foote KD (2009) Cognition and mood in Parkinson’s disease in subthalamic nucleus versus globus pallidus interna deep brain stimulation: the COMPARE trial. Ann Neurol 65(5):586–595CrossRefPubMed
Zurück zum Zitat Parent A, Hazrati LN (1995) Functional anatomy of the basal ganglia. II. The place of subthalamic nucleus and external pallidum in basal ganglia circuitry. Brain Res Brain Res Rev 20(1):128–154CrossRefPubMed Parent A, Hazrati LN (1995) Functional anatomy of the basal ganglia. II. The place of subthalamic nucleus and external pallidum in basal ganglia circuitry. Brain Res Brain Res Rev 20(1):128–154CrossRefPubMed
Zurück zum Zitat Polich J, Herbst KL (2000) P300 as a clinical assay: rationale, evaluation, and findings. Int J Psychophysiol 38(1):3–19CrossRefPubMed Polich J, Herbst KL (2000) P300 as a clinical assay: rationale, evaluation, and findings. Int J Psychophysiol 38(1):3–19CrossRefPubMed
Zurück zum Zitat Prabhakar S, Syal P, Srivastava T (2000) P300 in newly diagnosed non-dementing Parkinson’s disease: effect of dopaminergic drugs. Neurol India 48:239PubMed Prabhakar S, Syal P, Srivastava T (2000) P300 in newly diagnosed non-dementing Parkinson’s disease: effect of dopaminergic drugs. Neurol India 48:239PubMed
Zurück zum Zitat Rektor I, Kaňovský P, Bareš M, Louvel J, Lamarche M (2001) Event-related potentials, CNV, readiness potential, and movement accompanying potential recorded from posterior thalamus in human subjects. A SEEG study. Neurophysiol Clin 31:253–261CrossRefPubMed Rektor I, Kaňovský P, Bareš M, Louvel J, Lamarche M (2001) Event-related potentials, CNV, readiness potential, and movement accompanying potential recorded from posterior thalamus in human subjects. A SEEG study. Neurophysiol Clin 31:253–261CrossRefPubMed
Zurück zum Zitat Rektor I, Kaňovský P, Bareš M, Brázdil M, Streitová H, Klajblová I (2003) A SEEG study of ERP in motor and premotor cortices and in the basal ganglia. Clin Neurophysiol 114:463–471CrossRefPubMed Rektor I, Kaňovský P, Bareš M, Brázdil M, Streitová H, Klajblová I (2003) A SEEG study of ERP in motor and premotor cortices and in the basal ganglia. Clin Neurophysiol 114:463–471CrossRefPubMed
Zurück zum Zitat Rektor I, Bareš M, Kaňovský P, Brázdil M, Klajblová I, Streitová H (2004) Cognitive potentials in the basal ganglia—frontocortical circuits. An intracerebral recording study. Exp Brain Res 158:289–301CrossRefPubMed Rektor I, Bareš M, Kaňovský P, Brázdil M, Klajblová I, Streitová H (2004) Cognitive potentials in the basal ganglia—frontocortical circuits. An intracerebral recording study. Exp Brain Res 158:289–301CrossRefPubMed
Zurück zum Zitat Rektor I, Bareš M, Brázdil M, Kaňovský P, Rektorová I, Sochůrková D (2005) Cognitive- and movement-related potentials recorded in the human basal ganglia. Mov Disord 20(5):562–568CrossRefPubMed Rektor I, Bareš M, Brázdil M, Kaňovský P, Rektorová I, Sochůrková D (2005) Cognitive- and movement-related potentials recorded in the human basal ganglia. Mov Disord 20(5):562–568CrossRefPubMed
Zurück zum Zitat Rektorová I, Megová S, Bareš M, Rektor I (2005) Cognitive functioning after repetitive transcranial magnetic stimulation in patients with cerebrovascular disease without dementia: a pilot study of seven patients. J Neurol Sci 15:157–161CrossRef Rektorová I, Megová S, Bareš M, Rektor I (2005) Cognitive functioning after repetitive transcranial magnetic stimulation in patients with cerebrovascular disease without dementia: a pilot study of seven patients. J Neurol Sci 15:157–161CrossRef
Zurück zum Zitat Siebner HR, Rothwell J (2003) Transcranial magnetic stimulation: new insights into representational cortical plasticity. Exp Brain Res 148(1):1–16CrossRefPubMed Siebner HR, Rothwell J (2003) Transcranial magnetic stimulation: new insights into representational cortical plasticity. Exp Brain Res 148(1):1–16CrossRefPubMed
Zurück zum Zitat Squires NK, Squires KC, Hillyard SA (1975) Two varieties of long-latency positive waves evoked by unpredictable auditory stimuli in man. Electroencephalogr Clin Neurophysiol 38:387–401CrossRefPubMed Squires NK, Squires KC, Hillyard SA (1975) Two varieties of long-latency positive waves evoked by unpredictable auditory stimuli in man. Electroencephalogr Clin Neurophysiol 38:387–401CrossRefPubMed
Zurück zum Zitat Stanzione P, Fattapposta F, Giunti P, D’Alessio C, Tagliati M, Affricano C, Amabile G (1991) P300 variations in parkinsonian patients before and during dopaminergic monotherapy: a suggested dopamine component in P300. Electroencephalogr Clin Neurophysiol 80(5):446–453CrossRefPubMed Stanzione P, Fattapposta F, Giunti P, D’Alessio C, Tagliati M, Affricano C, Amabile G (1991) P300 variations in parkinsonian patients before and during dopaminergic monotherapy: a suggested dopamine component in P300. Electroencephalogr Clin Neurophysiol 80(5):446–453CrossRefPubMed
Zurück zum Zitat Strafella AP, Vanderwerf Y, Sadikot AF (2004) Transcranial magnetic stimulation of the human motor cortex influences the neuronal activity of subthalamic nucleus. Eur J Neurosci 20(8):2245–2249CrossRefPubMed Strafella AP, Vanderwerf Y, Sadikot AF (2004) Transcranial magnetic stimulation of the human motor cortex influences the neuronal activity of subthalamic nucleus. Eur J Neurosci 20(8):2245–2249CrossRefPubMed
Zurück zum Zitat Tachibana H, Aragane K, Kawabata K, Sugita M (1997) P3 latency change in aging and Parkinson disease. Arch Neurol 54(3):296–302PubMed Tachibana H, Aragane K, Kawabata K, Sugita M (1997) P3 latency change in aging and Parkinson disease. Arch Neurol 54(3):296–302PubMed
Zurück zum Zitat Temel Y, Blokland A, Steinbusch HWM, Visser-Vandewalle V (2005) The functional role of the subthalamic nucleus in cognitive and limbic circuits. Progr Neurobiol 76:393–413CrossRef Temel Y, Blokland A, Steinbusch HWM, Visser-Vandewalle V (2005) The functional role of the subthalamic nucleus in cognitive and limbic circuits. Progr Neurobiol 76:393–413CrossRef
Zurück zum Zitat Temel Y, Kessels A, Tan S, Topdag A, Boon P, Visser-Vandewalle V (2006) Behavioural changes after bilateral subthalamic stimulation in advanced Parkinson’s disease: a systematic review. Parkinsonism Relat Disord 12(5):265–272CrossRefPubMed Temel Y, Kessels A, Tan S, Topdag A, Boon P, Visser-Vandewalle V (2006) Behavioural changes after bilateral subthalamic stimulation in advanced Parkinson’s disease: a systematic review. Parkinsonism Relat Disord 12(5):265–272CrossRefPubMed
Zurück zum Zitat Vanderhasselt MA, De Raedt R, Baeken C, Leyman L, D’haenen H (2006) The influence of rTMS over the right dorsolateral prefrontal cortex on intentional set switching. Exp Brain Res 172(4):561–565CrossRefPubMed Vanderhasselt MA, De Raedt R, Baeken C, Leyman L, D’haenen H (2006) The influence of rTMS over the right dorsolateral prefrontal cortex on intentional set switching. Exp Brain Res 172(4):561–565CrossRefPubMed
Zurück zum Zitat Verleger R (1997) On the utility of P3 latency as an index of mental chronometry. Psychophysiology 34(2):131–156CrossRefPubMed Verleger R (1997) On the utility of P3 latency as an index of mental chronometry. Psychophysiology 34(2):131–156CrossRefPubMed
Zurück zum Zitat Voon V, Kubu C, Krack P, Houeto JL, Tröster AI (2006) Deep brain stimulation: neuropsychological and neuropsychiatric issues. Mov Disord 21(Suppl 14):S305–S327CrossRefPubMed Voon V, Kubu C, Krack P, Houeto JL, Tröster AI (2006) Deep brain stimulation: neuropsychological and neuropsychiatric issues. Mov Disord 21(Suppl 14):S305–S327CrossRefPubMed
Zurück zum Zitat Witt K, Daniels C, Reiff J, Krack P, Volkmann J, Pinsker MO et al (2008) Neuropsychological and psychiatric changes after deep brain stimulation for Parkinson’s disease: a randomised, multicentre study. Lancet Neurol 7(7):605–614CrossRefPubMed Witt K, Daniels C, Reiff J, Krack P, Volkmann J, Pinsker MO et al (2008) Neuropsychological and psychiatric changes after deep brain stimulation for Parkinson’s disease: a randomised, multicentre study. Lancet Neurol 7(7):605–614CrossRefPubMed
Metadaten
Titel
The effect of cortical repetitive transcranial magnetic stimulation on cognitive event-related potentials recorded in the subthalamic nucleus
verfasst von
M. Baláž
H. Srovnalová
I. Rektorová
I. Rektor
Publikationsdatum
01.06.2010
Verlag
Springer-Verlag
Erschienen in
Experimental Brain Research / Ausgabe 2/2010
Print ISSN: 0014-4819
Elektronische ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-010-2232-4

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