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Erschienen in: Brain Topography 3/2016

02.02.2016 | Original Paper

Modalities of Thinking: State and Trait Effects on Cross-Frequency Functional Independent Brain Networks

verfasst von: Patricia Milz, Roberto D. Pascual-Marqui, Dietrich Lehmann, Pascal L. Faber

Erschienen in: Brain Topography | Ausgabe 3/2016

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Abstract

Functional states of the brain are constituted by the temporally attuned activity of spatially distributed neural networks. Such networks can be identified by independent component analysis (ICA) applied to frequency-dependent source-localized EEG data. This methodology allows the identification of networks at high temporal resolution in frequency bands of established location-specific physiological functions. EEG measurements are sensitive to neural activity changes in cortical areas of modality-specific processing. We tested effects of modality-specific processing on functional brain networks. Phasic modality-specific processing was induced via tasks (state effects) and tonic processing was assessed via modality-specific person parameters (trait effects). Modality-specific person parameters and 64-channel EEG were obtained from 70 male, right-handed students. Person parameters were obtained using cognitive style questionnaires, cognitive tests, and thinking modality self-reports. EEG was recorded during four conditions: spatial visualization, object visualization, verbalization, and resting. Twelve cross-frequency networks were extracted from source-localized EEG across six frequency bands using ICA. RMANOVAs, Pearson correlations, and path modelling examined effects of tasks and person parameters on networks. Results identified distinct state- and trait-dependent functional networks. State-dependent networks were characterized by decreased, trait-dependent networks by increased alpha activity in sub-regions of modality-specific pathways. Pathways of competing modalities showed opposing alpha changes. State- and trait-dependent alpha were associated with inhibitory and automated processing, respectively. Antagonistic alpha modulations in areas of competing modalities likely prevent intruding effects of modality-irrelevant processing. Considerable research suggested alpha modulations related to modality-specific states and traits. This study identified the distinct electrophysiological cortical frequency-dependent networks within which they operate.
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Literatur
Zurück zum Zitat Agcaoglu O, Miller R, Mayer A, Hugdahl K, Calhoun V (2015) Lateralization of resting state networks and relationship to age and gender. Neuroimage 104:310–325PubMedCrossRef Agcaoglu O, Miller R, Mayer A, Hugdahl K, Calhoun V (2015) Lateralization of resting state networks and relationship to age and gender. Neuroimage 104:310–325PubMedCrossRef
Zurück zum Zitat Amedi A, Malach R, Pascual-Leone A (2005) Negative BOLD differentiates visual imagery and perception. Neuron 48:859–872PubMedCrossRef Amedi A, Malach R, Pascual-Leone A (2005) Negative BOLD differentiates visual imagery and perception. Neuron 48:859–872PubMedCrossRef
Zurück zum Zitat Arroyo S, Lesser RP, Gordon B, Uematsu S, Jackson D, Webber R (1993) Functional significance of the mu rhythm of human cortex: an electrophysiologic study with subdural electrodes. Electroencephalogr Clin Neurophysiol 87:76–87PubMedCrossRef Arroyo S, Lesser RP, Gordon B, Uematsu S, Jackson D, Webber R (1993) Functional significance of the mu rhythm of human cortex: an electrophysiologic study with subdural electrodes. Electroencephalogr Clin Neurophysiol 87:76–87PubMedCrossRef
Zurück zum Zitat Baschek IL, Bredenkamp J, Oehrle B, Wippich W (1977) Assessment of imagery (I), concreteness (C) and meaningfulness (m1) of 800 nouns. Z Exp Angew Psychol 24:353–396 Baschek IL, Bredenkamp J, Oehrle B, Wippich W (1977) Assessment of imagery (I), concreteness (C) and meaningfulness (m1) of 800 nouns. Z Exp Angew Psychol 24:353–396
Zurück zum Zitat Bazanova O, Vernon D (2014) Interpreting EEG alpha activity. Neurosci Biobehav Rev 44:94–110PubMedCrossRef Bazanova O, Vernon D (2014) Interpreting EEG alpha activity. Neurosci Biobehav Rev 44:94–110PubMedCrossRef
Zurück zum Zitat Becker R, Pefkou M, Michel CM, Hervais-Adelman AG (2013) Left temporal alpha-band activity reflects single word intelligibility. Front Syst Neurosci 7:121PubMedPubMedCentralCrossRef Becker R, Pefkou M, Michel CM, Hervais-Adelman AG (2013) Left temporal alpha-band activity reflects single word intelligibility. Front Syst Neurosci 7:121PubMedPubMedCentralCrossRef
Zurück zum Zitat Benjamini Y, Hochberg Y (1995) Controlling the false discovery rate: a practical and powerful approach to multiple testing. J R Stat Soc B 57:289–300 Benjamini Y, Hochberg Y (1995) Controlling the false discovery rate: a practical and powerful approach to multiple testing. J R Stat Soc B 57:289–300
Zurück zum Zitat Berger H (1933) Über das Elektroenzephalogramm des Menschen. Arch Psychiat Nervenkr 100:301–320CrossRef Berger H (1933) Über das Elektroenzephalogramm des Menschen. Arch Psychiat Nervenkr 100:301–320CrossRef
Zurück zum Zitat Blazhenkova O, Kozhevnikov M (2009) The new object-spatial-verbal cognitive style model: theory and measurement. Appl Cogn Psychol 23:638–663CrossRef Blazhenkova O, Kozhevnikov M (2009) The new object-spatial-verbal cognitive style model: theory and measurement. Appl Cogn Psychol 23:638–663CrossRef
Zurück zum Zitat Buckner RL, Petersen SE (1996) What does neuroimaging tell us about the role of prefrontal cortex in memory retrieval? Semin Neurosci 8(1):47–55CrossRef Buckner RL, Petersen SE (1996) What does neuroimaging tell us about the role of prefrontal cortex in memory retrieval? Semin Neurosci 8(1):47–55CrossRef
Zurück zum Zitat Cabeza R, Kapur S, Craik FI, McIntosh AR, Houle S, Tulving E (1997) Functional neuroanatomy of recall and recognition: A PET study of episodic memory. J Cogn Neurosci 9:254–265PubMedCrossRef Cabeza R, Kapur S, Craik FI, McIntosh AR, Houle S, Tulving E (1997) Functional neuroanatomy of recall and recognition: A PET study of episodic memory. J Cogn Neurosci 9:254–265PubMedCrossRef
Zurück zum Zitat Calhoun VD, Kiehl KA, Liddle PF, Pearlson GD (2004) Aberrant localization of synchronous hemodynamic activity in auditory cortex reliably characterizes schizophrenia. Biol Psychiatry 55:842–849PubMedPubMedCentralCrossRef Calhoun VD, Kiehl KA, Liddle PF, Pearlson GD (2004) Aberrant localization of synchronous hemodynamic activity in auditory cortex reliably characterizes schizophrenia. Biol Psychiatry 55:842–849PubMedPubMedCentralCrossRef
Zurück zum Zitat Cardoso JF (1989) Source separation using higher order moments. Proc IEEE Int Conf Acoust Speech Signal Process 4:2109–2112 Cardoso JF (1989) Source separation using higher order moments. Proc IEEE Int Conf Acoust Speech Signal Process 4:2109–2112
Zurück zum Zitat Cavada C, Goldman-Rakic PS (1989) Posterior parietal cortex in rhesus monkey: II. Evidence for segregated corticocortical networks linking sensory and limbic areas with the frontal lobe. J Comp Neurol 287:422–445PubMedCrossRef Cavada C, Goldman-Rakic PS (1989) Posterior parietal cortex in rhesus monkey: II. Evidence for segregated corticocortical networks linking sensory and limbic areas with the frontal lobe. J Comp Neurol 287:422–445PubMedCrossRef
Zurück zum Zitat Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129:564–583PubMedCrossRef Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129:564–583PubMedCrossRef
Zurück zum Zitat Chatrian GE, Petersen MC, Lazarte JA (1959) The blocking of the rolandic wicket rhythm and some central changes related to movement. Electroencephalogr Clin Neurophysiol 11:497–510PubMedCrossRef Chatrian GE, Petersen MC, Lazarte JA (1959) The blocking of the rolandic wicket rhythm and some central changes related to movement. Electroencephalogr Clin Neurophysiol 11:497–510PubMedCrossRef
Zurück zum Zitat Chen W, Kato T, Zhu X-H, Ogawa S, Tank DW, Ugurbil K (1998) Human primary visual cortex and lateral geniculate nucleus activation during visual imagery. NeuroReport 9:3669–3674PubMedCrossRef Chen W, Kato T, Zhu X-H, Ogawa S, Tank DW, Ugurbil K (1998) Human primary visual cortex and lateral geniculate nucleus activation during visual imagery. NeuroReport 9:3669–3674PubMedCrossRef
Zurück zum Zitat Cichocki A, S-I Amari (2002) Adaptive blind signal and image processing: learning algorithms and applications, vol 1. Wiley, New YorkCrossRef Cichocki A, S-I Amari (2002) Adaptive blind signal and image processing: learning algorithms and applications, vol 1. Wiley, New YorkCrossRef
Zurück zum Zitat Damoiseaux J, Rombouts S, Barkhof F, Scheltens P, Stam C, Smith SM, Beckmann C (2006) Consistent resting-state networks across healthy subjects. Proc Natl Acad Sci USA 103:13848–13853PubMedPubMedCentralCrossRef Damoiseaux J, Rombouts S, Barkhof F, Scheltens P, Stam C, Smith SM, Beckmann C (2006) Consistent resting-state networks across healthy subjects. Proc Natl Acad Sci USA 103:13848–13853PubMedPubMedCentralCrossRef
Zurück zum Zitat Daselaar SM, Porat Y, Huijbers W, Pennartz CM (2010) Modality-specific and modality-independent components of the human imagery system. Neuroimage 52:677–685PubMedCrossRef Daselaar SM, Porat Y, Huijbers W, Pennartz CM (2010) Modality-specific and modality-independent components of the human imagery system. Neuroimage 52:677–685PubMedCrossRef
Zurück zum Zitat Doppelmayr M, Klimesch W, Stadler W, Poellhuber D, Heine C (2002) EEG alpha power and intelligence. Intelligence 30:289–302CrossRef Doppelmayr M, Klimesch W, Stadler W, Poellhuber D, Heine C (2002) EEG alpha power and intelligence. Intelligence 30:289–302CrossRef
Zurück zum Zitat Ekstrom RB, French JW, Harman HH, Derman D (1976) Manual for kit of factor-referenced cognitive tests. Educational Testing Service, Princeton Ekstrom RB, French JW, Harman HH, Derman D (1976) Manual for kit of factor-referenced cognitive tests. Educational Testing Service, Princeton
Zurück zum Zitat Ernest CH (1977) Imagery ability and cognition: a critical review. J Ment Imag 1:181–216 Ernest CH (1977) Imagery ability and cognition: a critical review. J Ment Imag 1:181–216
Zurück zum Zitat Fehr T, Wallace GL, Erhard P, Herrmann M (2011) The neural architecture of expert calendar calculation: a matter of strategy? Neurocase 17:360–371PubMedCrossRef Fehr T, Wallace GL, Erhard P, Herrmann M (2011) The neural architecture of expert calendar calculation: a matter of strategy? Neurocase 17:360–371PubMedCrossRef
Zurück zum Zitat Fletcher PC, Frith CD, Rugg MD (1997) The functional neuroanatomy of episodic memory. Trends Neurosci 20:213–218PubMedCrossRef Fletcher PC, Frith CD, Rugg MD (1997) The functional neuroanatomy of episodic memory. Trends Neurosci 20:213–218PubMedCrossRef
Zurück zum Zitat Frei E, Gamma A, Pascual-Marqui R, Lehmann D, Hell D, Vollenweider FX (2001) Localization of MDMA-induced brain activity in healthy volunteers using low resolution brain electromagnetic tomography (LORETA). Hum Brain Mapp 14:152–165. doi:10.1002/hbm.1049 PubMedCrossRef Frei E, Gamma A, Pascual-Marqui R, Lehmann D, Hell D, Vollenweider FX (2001) Localization of MDMA-induced brain activity in healthy volunteers using low resolution brain electromagnetic tomography (LORETA). Hum Brain Mapp 14:152–165. doi:10.​1002/​hbm.​1049 PubMedCrossRef
Zurück zum Zitat Fuster JM (2006) The cognit: a network model of cortical representation. Int J Psychophysiol 60:125–132PubMedCrossRef Fuster JM (2006) The cognit: a network model of cortical representation. Int J Psychophysiol 60:125–132PubMedCrossRef
Zurück zum Zitat Gevins A, Smith ME (2000) Neurophysiological measures of working memory and individual differences in cognitive ability and cognitive style. Cereb Cortex 10:829–839PubMedCrossRef Gevins A, Smith ME (2000) Neurophysiological measures of working memory and individual differences in cognitive ability and cognitive style. Cereb Cortex 10:829–839PubMedCrossRef
Zurück zum Zitat Golla F, Hutton E, Walter WG (1943) The objective study of mental imagery. I. Physiological concomitants. J Ment Sci 89:216–223 Golla F, Hutton E, Walter WG (1943) The objective study of mental imagery. I. Physiological concomitants. J Ment Sci 89:216–223
Zurück zum Zitat Greicius MD, Supekar K, Menon V, Dougherty RF (2009) Resting-state functional connectivity reflects structural connectivity in the default mode network. Cereb Cortex 19:72–78PubMedPubMedCentralCrossRef Greicius MD, Supekar K, Menon V, Dougherty RF (2009) Resting-state functional connectivity reflects structural connectivity in the default mode network. Cereb Cortex 19:72–78PubMedPubMedCentralCrossRef
Zurück zum Zitat Harris IM, Egan GF, Sonkkila C, Tochon-Danguy HJ, Paxinos G, Watson JD (2000) Selective right parietal lobe activation during mental rotation: a parametric PET study. Brain 123:65–73PubMedCrossRef Harris IM, Egan GF, Sonkkila C, Tochon-Danguy HJ, Paxinos G, Watson JD (2000) Selective right parietal lobe activation during mental rotation: a parametric PET study. Brain 123:65–73PubMedCrossRef
Zurück zum Zitat Hickok G, Poeppel D (2004) Dorsal and ventral streams: a framework for understanding aspects of the functional anatomy of language. Cognition 92:67–99PubMedCrossRef Hickok G, Poeppel D (2004) Dorsal and ventral streams: a framework for understanding aspects of the functional anatomy of language. Cognition 92:67–99PubMedCrossRef
Zurück zum Zitat Horn W (1962) Leistungsprüfsystem, LPS: Handanweisung für die Durchführung, Auswertung und Interpretation. Erschienen, Göttingen Horn W (1962) Leistungsprüfsystem, LPS: Handanweisung für die Durchführung, Auswertung und Interpretation. Erschienen, Göttingen
Zurück zum Zitat Hsu NS, Kraemer DJ, Oliver RT, Schlichting ML, Thompson-Schill SL (2011) Color, context, and cognitive style: variations in color knowledge retrieval as a function of task and subject variables. J Cogn Neurosci 23:2544–2557. doi:10.1162/jocn.2011.21619 PubMedCrossRef Hsu NS, Kraemer DJ, Oliver RT, Schlichting ML, Thompson-Schill SL (2011) Color, context, and cognitive style: variations in color knowledge retrieval as a function of task and subject variables. J Cogn Neurosci 23:2544–2557. doi:10.​1162/​jocn.​2011.​21619 PubMedCrossRef
Zurück zum Zitat Hugdahl K, Thomsen T, Ersland L (2006) Sex differences in visuo-spatial processing: An fMRI study of mental rotation. Neuropsychologia 44:1575–1583PubMedCrossRef Hugdahl K, Thomsen T, Ersland L (2006) Sex differences in visuo-spatial processing: An fMRI study of mental rotation. Neuropsychologia 44:1575–1583PubMedCrossRef
Zurück zum Zitat Ishai A, Ungerleider LG, Haxby JV (2000) Distributed neural systems for the generation of visual images. Neuron 28:979–990PubMedCrossRef Ishai A, Ungerleider LG, Haxby JV (2000) Distributed neural systems for the generation of visual images. Neuron 28:979–990PubMedCrossRef
Zurück zum Zitat Jäger AO, Süß H-M, Beauducel A (1997) Berliner Intelligenzstruktur-Test, BIS-Test. Form 4. Handanweisung [The Berlin Intelligence Structure Test, BIS test. 4. Form. Test manual]. Hogrefe, Göttingen Jäger AO, Süß H-M, Beauducel A (1997) Berliner Intelligenzstruktur-Test, BIS-Test. Form 4. Handanweisung [The Berlin Intelligence Structure Test, BIS test. 4. Form. Test manual]. Hogrefe, Göttingen
Zurück zum Zitat Jaušovec N (1996) Differences in EEG alpha activity related to giftedness. Intelligence 23:159–173CrossRef Jaušovec N (1996) Differences in EEG alpha activity related to giftedness. Intelligence 23:159–173CrossRef
Zurück zum Zitat Kirby JR, Moore PJ, Schofield NJ (1988) Verbal and visual learning styles. Contemp Educ Psychol 13:169–184CrossRef Kirby JR, Moore PJ, Schofield NJ (1988) Verbal and visual learning styles. Contemp Educ Psychol 13:169–184CrossRef
Zurück zum Zitat Klimesch W (1999) EEG alpha and theta oscillations reflect cognitive and memory performance: a review and analysis. Brain Res Brain Res Rev 29:169–195PubMedCrossRef Klimesch W (1999) EEG alpha and theta oscillations reflect cognitive and memory performance: a review and analysis. Brain Res Brain Res Rev 29:169–195PubMedCrossRef
Zurück zum Zitat Knauff M, Kassubek J, Mulack T, Greenlee MW (2000) Cortical activation evoked by visual mental imagery as measured by fMRI. NeuroReport 11:3957–3962PubMedCrossRef Knauff M, Kassubek J, Mulack T, Greenlee MW (2000) Cortical activation evoked by visual mental imagery as measured by fMRI. NeuroReport 11:3957–3962PubMedCrossRef
Zurück zum Zitat Koenig T, Kochi K, Lehmann D (1998) Event-related electric microstates of the brain differ between words with visual and abstract meaning. Electroencephalogr Clin Neurophysiol 106:535–546PubMedCrossRef Koenig T, Kochi K, Lehmann D (1998) Event-related electric microstates of the brain differ between words with visual and abstract meaning. Electroencephalogr Clin Neurophysiol 106:535–546PubMedCrossRef
Zurück zum Zitat Koenig T et al (2002) Millisecond by millisecond, year by year: normative EEG microstates and developmental stages. Neuroimage 16:41–48PubMedCrossRef Koenig T et al (2002) Millisecond by millisecond, year by year: normative EEG microstates and developmental stages. Neuroimage 16:41–48PubMedCrossRef
Zurück zum Zitat Kosslyn SM et al (1999) The role of area 17 in visual imagery: convergent evidence from PET and rTMS. Science 284:167–170PubMedCrossRef Kosslyn SM et al (1999) The role of area 17 in visual imagery: convergent evidence from PET and rTMS. Science 284:167–170PubMedCrossRef
Zurück zum Zitat Kozhevnikov M (2007) Cognitive styles in the context of modern psychology: toward an integrated framework of cognitive style. Psychol Bull 133:464–481PubMedCrossRef Kozhevnikov M (2007) Cognitive styles in the context of modern psychology: toward an integrated framework of cognitive style. Psychol Bull 133:464–481PubMedCrossRef
Zurück zum Zitat Kozhevnikov M, Hegarty M, Mayer R (2002) Revising the visualizer-verbalizer dimension: evidence for two types of visualizers. Cogn Instr 20:47–78CrossRef Kozhevnikov M, Hegarty M, Mayer R (2002) Revising the visualizer-verbalizer dimension: evidence for two types of visualizers. Cogn Instr 20:47–78CrossRef
Zurück zum Zitat Kraemer DJ, Hamilton RH, Messing SB, DeSantis JH, Thompson-Schill SL (2014) Cognitive style, cortical stimulation, and the conversion hypothesis. Front Hum Neurosci 8:15PubMedPubMedCentralCrossRef Kraemer DJ, Hamilton RH, Messing SB, DeSantis JH, Thompson-Schill SL (2014) Cognitive style, cortical stimulation, and the conversion hypothesis. Front Hum Neurosci 8:15PubMedPubMedCentralCrossRef
Zurück zum Zitat Kuhlman WN (1978) Functional topography of the human mu rhythm. Electroencephalogr Clin Neurophysiol 44:83–93PubMedCrossRef Kuhlman WN (1978) Functional topography of the human mu rhythm. Electroencephalogr Clin Neurophysiol 44:83–93PubMedCrossRef
Zurück zum Zitat Lehtela L, Salmelin R, Hari R (1997) Evidence for reactive magnetic 10-Hz rhythm in the human auditory cortex. Neurosci Lett 222:111–114PubMedCrossRef Lehtela L, Salmelin R, Hari R (1997) Evidence for reactive magnetic 10-Hz rhythm in the human auditory cortex. Neurosci Lett 222:111–114PubMedCrossRef
Zurück zum Zitat Lehtonen JB, Lehtinen I (1972) Alpha rhythm and uniform visual field in man. Electroencephalogr Clin Neurophysiol 32:139–147PubMedCrossRef Lehtonen JB, Lehtinen I (1972) Alpha rhythm and uniform visual field in man. Electroencephalogr Clin Neurophysiol 32:139–147PubMedCrossRef
Zurück zum Zitat Leichnetz GR (2001) Connections of the medial posterior parietal cortex (area 7 m) in the monkey. Anat Rec 263:215–236PubMedCrossRef Leichnetz GR (2001) Connections of the medial posterior parietal cortex (area 7 m) in the monkey. Anat Rec 263:215–236PubMedCrossRef
Zurück zum Zitat Logothetis NK, Pauls J, Augath M, Trinath T, Oeltermann A (2001) Neurophysiological investigation of the basis of the fMRI signal. Nature 412:150–157PubMedCrossRef Logothetis NK, Pauls J, Augath M, Trinath T, Oeltermann A (2001) Neurophysiological investigation of the basis of the fMRI signal. Nature 412:150–157PubMedCrossRef
Zurück zum Zitat Makeig S, Jung T-P (1995) Changes in alertness are a principal component of variance in the EEG spectrum. NeuroReport 7:213–216PubMedCrossRef Makeig S, Jung T-P (1995) Changes in alertness are a principal component of variance in the EEG spectrum. NeuroReport 7:213–216PubMedCrossRef
Zurück zum Zitat Mantini D, Perrucci MG, Del Gratta C, Romani GL, Corbetta M (2007) Electrophysiological signatures of resting state networks in the human brain. Proc Natl Acad Sci 104:13170–13175PubMedPubMedCentralCrossRef Mantini D, Perrucci MG, Del Gratta C, Romani GL, Corbetta M (2007) Electrophysiological signatures of resting state networks in the human brain. Proc Natl Acad Sci 104:13170–13175PubMedPubMedCentralCrossRef
Zurück zum Zitat Marks DF (1973) Visual imagery differences in the recall of pictures. Br J Psychol 64:17–24PubMedCrossRef Marks DF (1973) Visual imagery differences in the recall of pictures. Br J Psychol 64:17–24PubMedCrossRef
Zurück zum Zitat Mayer RE, Massa LJ (2003) Three facets of visual and verbal learners: cognitive ability, cognitive style, and learning preference. J Educ Psychol 95:833CrossRef Mayer RE, Massa LJ (2003) Three facets of visual and verbal learners: cognitive ability, cognitive style, and learning preference. J Educ Psychol 95:833CrossRef
Zurück zum Zitat McKeown MJ, Makeig S, Brown GG, Jung T-P, Kindermann SS, Bell AJ, Sejnowski TJ (1998) Analysis of fMRI data by blind separation into independent spatial components. Hum Brain Mapp 6:160–188PubMedCrossRef McKeown MJ, Makeig S, Brown GG, Jung T-P, Kindermann SS, Bell AJ, Sejnowski TJ (1998) Analysis of fMRI data by blind separation into independent spatial components. Hum Brain Mapp 6:160–188PubMedCrossRef
Zurück zum Zitat Meili R (1955) Würfelabwicklungen. Huber, Bern Meili R (1955) Würfelabwicklungen. Huber, Bern
Zurück zum Zitat Mesulam M-M (1990) Large-scale neurocognitive networks and distributed processing for attention, language, and memory. Ann Neurol 28:597–613PubMedCrossRef Mesulam M-M (1990) Large-scale neurocognitive networks and distributed processing for attention, language, and memory. Ann Neurol 28:597–613PubMedCrossRef
Zurück zum Zitat Milz P, Faber PL, Lehmann D (submitted) The modality of thinking questionnaire—a new self-report measure of object-spatial-verbal cognitive style Milz P, Faber PL, Lehmann D (submitted) The modality of thinking questionnaire—a new self-report measure of object-spatial-verbal cognitive style
Zurück zum Zitat Neubauer AC, Grabner RH, Fink A, Neuper C (2005) Intelligence and neural efficiency: further evidence of the influence of task content and sex on the brain–IQ relationship. Cognit Brain Res 25:217–225CrossRef Neubauer AC, Grabner RH, Fink A, Neuper C (2005) Intelligence and neural efficiency: further evidence of the influence of task content and sex on the brain–IQ relationship. Cognit Brain Res 25:217–225CrossRef
Zurück zum Zitat Niedermeyer E (1991) The “third rhythm”: further observations. Clin Electroencephalogr 22:83–96PubMedCrossRef Niedermeyer E (1991) The “third rhythm”: further observations. Clin Electroencephalogr 22:83–96PubMedCrossRef
Zurück zum Zitat Niedermeyer E, Lopes Da Silva F (2005) Electroencephalography: basic principles, clinical applications, and related fields. Lippincott Williams Wilkins, Philadelphia Niedermeyer E, Lopes Da Silva F (2005) Electroencephalography: basic principles, clinical applications, and related fields. Lippincott Williams Wilkins, Philadelphia
Zurück zum Zitat O’Gorman R et al (2013) Coupling between resting cerebral perfusion and EEG. Brain Topogr 26:442–457PubMedCrossRef O’Gorman R et al (2013) Coupling between resting cerebral perfusion and EEG. Brain Topogr 26:442–457PubMedCrossRef
Zurück zum Zitat Palva S, Palva JM (2007) New vistas for α-frequency band oscillations. Trends Neurosci 30:150–158PubMedCrossRef Palva S, Palva JM (2007) New vistas for α-frequency band oscillations. Trends Neurosci 30:150–158PubMedCrossRef
Zurück zum Zitat Pascual-Marqui RD (2007) Discrete, 3D distributed, linear imaging methods of electric neuronal activity. Part 1: Exact, zero error localization. arXiv:07103341 Pascual-Marqui RD (2007) Discrete, 3D distributed, linear imaging methods of electric neuronal activity. Part 1: Exact, zero error localization. arXiv:07103341
Zurück zum Zitat Pascual-Marqui RD, Biscay-Lirio RJ (2011) Interaction patterns of brain activity across space, time and frequency. Part I: Methods. arXiv:11032852v2 Pascual-Marqui RD, Biscay-Lirio RJ (2011) Interaction patterns of brain activity across space, time and frequency. Part I: Methods. arXiv:11032852v2
Zurück zum Zitat Pascual-Marqui RD et al (2014) The resting microstate networks (RMN): cortical distributions, dynamics, and frequency specific information flow. arXiv:14111949 Pascual-Marqui RD et al (2014) The resting microstate networks (RMN): cortical distributions, dynamics, and frequency specific information flow. arXiv:14111949
Zurück zum Zitat Pfurtscheller G (2003) Induced oscillations in the alpha band: functional meaning. Epilepsia 44:2–8PubMedCrossRef Pfurtscheller G (2003) Induced oscillations in the alpha band: functional meaning. Epilepsia 44:2–8PubMedCrossRef
Zurück zum Zitat Pfurtscheller G, Da Silva FL (1999) Event-related EEG/MEG synchronization and desynchronization: basic principles. Clin Neurophysiol 110:1842–1857PubMedCrossRef Pfurtscheller G, Da Silva FL (1999) Event-related EEG/MEG synchronization and desynchronization: basic principles. Clin Neurophysiol 110:1842–1857PubMedCrossRef
Zurück zum Zitat Pollen DA, Trachtenberg MC (1972) Some problems of occipital alpha block in man. Brain Res 41:303–314PubMedCrossRef Pollen DA, Trachtenberg MC (1972) Some problems of occipital alpha block in man. Brain Res 41:303–314PubMedCrossRef
Zurück zum Zitat Ray WJ, Cole HW (1985) EEG alpha activity reflects attentional demands, and beta activity reflects emotional and cognitive processes. Science 228:750–752PubMedCrossRef Ray WJ, Cole HW (1985) EEG alpha activity reflects attentional demands, and beta activity reflects emotional and cognitive processes. Science 228:750–752PubMedCrossRef
Zurück zum Zitat Riding RJ, Cheema I (1991) Cognitive styles—an overview and integration. Edu Psychol 11:193–215CrossRef Riding RJ, Cheema I (1991) Cognitive styles—an overview and integration. Edu Psychol 11:193–215CrossRef
Zurück zum Zitat Salenius S, Kajola M, Thompson WL, Kosslyn S, Hari R (1995) Reactivity of magnetic parieto-occipital alpha rhythm during visual imagery. Electroencephalogr Clin Neurophysiol 95:453–462PubMedCrossRef Salenius S, Kajola M, Thompson WL, Kosslyn S, Hari R (1995) Reactivity of magnetic parieto-occipital alpha rhythm during visual imagery. Electroencephalogr Clin Neurophysiol 95:453–462PubMedCrossRef
Zurück zum Zitat Schmidtke JI, Heller W (2004) Personality, affect and EEG: predicting patterns of regional brain activity related to extraversion and neuroticism. Pers Individ Differ 36:717–732CrossRef Schmidtke JI, Heller W (2004) Personality, affect and EEG: predicting patterns of regional brain activity related to extraversion and neuroticism. Pers Individ Differ 36:717–732CrossRef
Zurück zum Zitat Selemon L, Goldman-Rakic P (1988) Common cortical and subcortical targets of the dorsolateral prefrontal and posterior parietal cortices in the rhesus monkey: evidence for a distributed neural network subserving spatially guided behavior. J Neurosci 8:4049–4068PubMed Selemon L, Goldman-Rakic P (1988) Common cortical and subcortical targets of the dorsolateral prefrontal and posterior parietal cortices in the rhesus monkey: evidence for a distributed neural network subserving spatially guided behavior. J Neurosci 8:4049–4068PubMed
Zurück zum Zitat Slatter KH (1960) Alpha rhythms and mental imagery. Electroencephalogr Clin Neurophysiol 12:851–859CrossRef Slatter KH (1960) Alpha rhythms and mental imagery. Electroencephalogr Clin Neurophysiol 12:851–859CrossRef
Zurück zum Zitat Tiihonen J, Hari R, Kajola M, Karhu J, Ahlfors S, Tissari S (1991) Magnetoencephalographic 10-Hz rhythm from the human auditory cortex. Neurosci Lett 129:303–305PubMedCrossRef Tiihonen J, Hari R, Kajola M, Karhu J, Ahlfors S, Tissari S (1991) Magnetoencephalographic 10-Hz rhythm from the human auditory cortex. Neurosci Lett 129:303–305PubMedCrossRef
Zurück zum Zitat Tononi G, McIntosh AR, Russell DP, Edelman GM (1998) Functional clustering: identifying strongly interactive brain regions in neuroimaging data. Neuroimage 7:133–149PubMedCrossRef Tononi G, McIntosh AR, Russell DP, Edelman GM (1998) Functional clustering: identifying strongly interactive brain regions in neuroimaging data. Neuroimage 7:133–149PubMedCrossRef
Zurück zum Zitat Ungerleider LG, Mishkin M (1982) Two cortical visual systems. In: Ingle DJ, Goodale MA, Mansfield RJW (eds) Analysis of visual behavior. MIT Press, Cambridge, pp 549–586 Ungerleider LG, Mishkin M (1982) Two cortical visual systems. In: Ingle DJ, Goodale MA, Mansfield RJW (eds) Analysis of visual behavior. MIT Press, Cambridge, pp 549–586
Zurück zum Zitat Wackermann J (1996) Beyond mapping: estimating complexity of multichannel EEG recordings. Acta Neurobiol Exp 56:197–208 Wackermann J (1996) Beyond mapping: estimating complexity of multichannel EEG recordings. Acta Neurobiol Exp 56:197–208
Zurück zum Zitat Wackermann J (1999) Towards a quantitative characterisation of functional states of the brain: from the non-linear methodology to the global linear description. Int J Psychophysiol 34:65–80PubMedCrossRef Wackermann J (1999) Towards a quantitative characterisation of functional states of the brain: from the non-linear methodology to the global linear description. Int J Psychophysiol 34:65–80PubMedCrossRef
Zurück zum Zitat Zarahn E, Aguirre G, D’Esposito M (2000) Replication and further studies of neural mechanisms of spatial mnemonic processing in humans. Cogn Brain Res 9:1–17CrossRef Zarahn E, Aguirre G, D’Esposito M (2000) Replication and further studies of neural mechanisms of spatial mnemonic processing in humans. Cogn Brain Res 9:1–17CrossRef
Metadaten
Titel
Modalities of Thinking: State and Trait Effects on Cross-Frequency Functional Independent Brain Networks
verfasst von
Patricia Milz
Roberto D. Pascual-Marqui
Dietrich Lehmann
Pascal L. Faber
Publikationsdatum
02.02.2016
Verlag
Springer US
Erschienen in
Brain Topography / Ausgabe 3/2016
Print ISSN: 0896-0267
Elektronische ISSN: 1573-6792
DOI
https://doi.org/10.1007/s10548-016-0469-3

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