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Erschienen in: Brain Structure and Function 5/2020

28.04.2020 | Original Article

Spatiotemporal dynamics of auditory information processing in the insular cortex: an intracranial EEG study using an oddball paradigm

verfasst von: Daphné Citherlet, Olivier Boucher, Julie Tremblay, Manon Robert, Anne Gallagher, Alain Bouthillier, Franco Lepore, Dang Khoa Nguyen

Erschienen in: Brain Structure and Function | Ausgabe 5/2020

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Abstract

Functional neuroimaging studies using auditory stimuli consistently show activation of the insular cortex. However, due to the limited temporal resolution of non-invasive neuroimaging techniques, the role(s) of the insula in auditory processing remains unclear. As the anterior insula (aI) and the posterior insula (pI) have different connections and are thought to be functionally distinct, it is likely that these two areas contribute differently to auditory processing. Our study examines the spatiotemporal dynamics of auditory processing in the insula using intracranial electroencephalography (EEG). Eight epileptic patients completed two passive listening tasks and one three-stimulus auditory oddball detection task during the intracranial EEG monitoring of their drug-resistant seizures. Recordings were obtained from depth electrodes implanted in 11 insulae. Event-related potentials (ERPs) were analyzed using permutation analyses during the N100 and the P300 intervals, and modulations of alpha, theta, and gamma band responses were compared using Wilcoxon/Mann–Whitney analyses. N100 responses to auditory stimuli were mostly observed in the pI and were little affected by task conditions. Auditory target detection was associated with P300 ERPs, and alpha, theta, high- and low-gamma responses, preferentially at aI contacts. Results suggest that the aI is involved in voluntary attentional processing of task-relevant information, whereas the pI is involved in automatic auditory processing.
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Literatur
Zurück zum Zitat Ackermann H, Riecker A, Mathiak K, Erb M, Grodd W, Wildgruber D (2001) Rate-dependent activation of a prefrontal-insular-cerebellar network during passive listening to trains of click stimuli: an fMRI study. NeuroReport 12:4087–4092PubMedCrossRef Ackermann H, Riecker A, Mathiak K, Erb M, Grodd W, Wildgruber D (2001) Rate-dependent activation of a prefrontal-insular-cerebellar network during passive listening to trains of click stimuli: an fMRI study. NeuroReport 12:4087–4092PubMedCrossRef
Zurück zum Zitat Afif A, Minotti L, Kahane P, Hoffmann D (2010) Anatomofunctional organization of the insular cortex: a study using intracerebral electrical stimulation in epileptic patients. Epilepsia 51:2305–2315PubMedCrossRef Afif A, Minotti L, Kahane P, Hoffmann D (2010) Anatomofunctional organization of the insular cortex: a study using intracerebral electrical stimulation in epileptic patients. Epilepsia 51:2305–2315PubMedCrossRef
Zurück zum Zitat Alain C, Richer F, Achim A, Saint Hilaire JM (1989) Human intracerebral potentials associated with target, novel, and omitted auditory stimuli. Brain Topogr 1:237–245PubMedCrossRef Alain C, Richer F, Achim A, Saint Hilaire JM (1989) Human intracerebral potentials associated with target, novel, and omitted auditory stimuli. Brain Topogr 1:237–245PubMedCrossRef
Zurück zum Zitat Almashaikhi T, Rheims S, Ostrowsky-Coste K, Montavont A, Jung J, De Bellescize J, Arzimanoglou A, Keo Kosal P, Guenot M, Bertrand O et al (2014) Intrainsular functional connectivity in human. Hum Brain Mapp 35:2779–2788PubMedCrossRef Almashaikhi T, Rheims S, Ostrowsky-Coste K, Montavont A, Jung J, De Bellescize J, Arzimanoglou A, Keo Kosal P, Guenot M, Bertrand O et al (2014) Intrainsular functional connectivity in human. Hum Brain Mapp 35:2779–2788PubMedCrossRef
Zurück zum Zitat Ardekani BA, Choi SJ, Hossein-Zadeh GA, Porjesz B, Tanabe JL, Lim KO, Bilder R, Helpern JA, Begleiter H (2002) Functional magnetic resonance imaging of brain activity in the visual oddball task. Brain Res Cogn Brain Res 14:347–356PubMedCrossRef Ardekani BA, Choi SJ, Hossein-Zadeh GA, Porjesz B, Tanabe JL, Lim KO, Bilder R, Helpern JA, Begleiter H (2002) Functional magnetic resonance imaging of brain activity in the visual oddball task. Brain Res Cogn Brain Res 14:347–356PubMedCrossRef
Zurück zum Zitat Augustine JR (1996) Circuitry and functional aspects of the insular lobe in primates including humans. Brain Res Brain Res Rev 22:229–244PubMedCrossRef Augustine JR (1996) Circuitry and functional aspects of the insular lobe in primates including humans. Brain Res Brain Res Rev 22:229–244PubMedCrossRef
Zurück zum Zitat Avery JA, Kerr KL, Ingeholm JE, Burrows K, Bodurka J, Simmons WK (2015) A common gustatory and interoceptive representation in the human mid-insula. Hum Brain Mapp 36:2996–3006PubMedPubMedCentralCrossRef Avery JA, Kerr KL, Ingeholm JE, Burrows K, Bodurka J, Simmons WK (2015) A common gustatory and interoceptive representation in the human mid-insula. Hum Brain Mapp 36:2996–3006PubMedPubMedCentralCrossRef
Zurück zum Zitat Ayotte J, Peretz I, Rousseau I, Bard C, Bojanowski M (2000) Patterns of music agnosia associated with middle cerebral artery infarcts. Brain 123:1926–1938PubMedCrossRef Ayotte J, Peretz I, Rousseau I, Bard C, Bojanowski M (2000) Patterns of music agnosia associated with middle cerebral artery infarcts. Brain 123:1926–1938PubMedCrossRef
Zurück zum Zitat Bamiou DE, Musiek FE, Luxon LM (2003) The insula (Island of Reil) and its role in auditory processing. Literature review. Brain Res Brain Res Rev 42:143–154PubMedCrossRef Bamiou DE, Musiek FE, Luxon LM (2003) The insula (Island of Reil) and its role in auditory processing. Literature review. Brain Res Brain Res Rev 42:143–154PubMedCrossRef
Zurück zum Zitat Bamiou DE, Musiek FE, Stow I, Stevens J, Cipolotti L, Brown MM, Luxon LM (2006) Auditory temporal processing deficits in patients with insular stroke. Neurology 67:614–619PubMedCrossRef Bamiou DE, Musiek FE, Stow I, Stevens J, Cipolotti L, Brown MM, Luxon LM (2006) Auditory temporal processing deficits in patients with insular stroke. Neurology 67:614–619PubMedCrossRef
Zurück zum Zitat Baudena P, Halgren E, Heit G, Clarke JM (1995) Intracerebral potentials to rare target and distractor auditory and visual stimuli. III. Frontal cortex. Electroencephalogr Clin Neurophysiol 94:251–264PubMedCrossRef Baudena P, Halgren E, Heit G, Clarke JM (1995) Intracerebral potentials to rare target and distractor auditory and visual stimuli. III. Frontal cortex. Electroencephalogr Clin Neurophysiol 94:251–264PubMedCrossRef
Zurück zum Zitat Berntson GG, Norman GJ, Bechara A, Bruss J, Tranel D, Cacioppo JTJPS (2011) The insula and evaluative processes. Psychol Sci 22:80–86PubMedCrossRef Berntson GG, Norman GJ, Bechara A, Bruss J, Tranel D, Cacioppo JTJPS (2011) The insula and evaluative processes. Psychol Sci 22:80–86PubMedCrossRef
Zurück zum Zitat Bledowski C, Prvulovic D, Goebel R, Zanella FE, Linden DE (2004a) Attentional systems in target and distractor processing: a combined ERP and fMRI study. Neuroimage 22:530–540PubMedCrossRef Bledowski C, Prvulovic D, Goebel R, Zanella FE, Linden DE (2004a) Attentional systems in target and distractor processing: a combined ERP and fMRI study. Neuroimage 22:530–540PubMedCrossRef
Zurück zum Zitat Bledowski C, Prvulovic D, Hoechstetter K, Scherg M, Wibral M, Goebel R, Linden DE (2004b) Localizing P300 generators in visual target and distractor processing: a combined event-related potential and functional magnetic resonance imaging study. J Neurosci 24:9353–9360PubMedPubMedCentralCrossRef Bledowski C, Prvulovic D, Hoechstetter K, Scherg M, Wibral M, Goebel R, Linden DE (2004b) Localizing P300 generators in visual target and distractor processing: a combined event-related potential and functional magnetic resonance imaging study. J Neurosci 24:9353–9360PubMedPubMedCentralCrossRef
Zurück zum Zitat Boucher O, D'Hondt F, Tremblay J, Lepore F, Lassonde M, Vannasing P, Bouthillier A, Nguyen DK (2015a) Spatiotemporal dynamics of affective picture processing revealed by intracranial high-gamma modulations. Hum Brain Mapp 36:16–28PubMedCrossRef Boucher O, D'Hondt F, Tremblay J, Lepore F, Lassonde M, Vannasing P, Bouthillier A, Nguyen DK (2015a) Spatiotemporal dynamics of affective picture processing revealed by intracranial high-gamma modulations. Hum Brain Mapp 36:16–28PubMedCrossRef
Zurück zum Zitat Boucher O, Turgeon C, Champoux S, Menard L, Rouleau I, Lassonde M, Lepore F, Nguyen DK (2015b) Hyperacusis following unilateral damage to the insular cortex: a three-case report. Brain Res 1606:102–112PubMedCrossRef Boucher O, Turgeon C, Champoux S, Menard L, Rouleau I, Lassonde M, Lepore F, Nguyen DK (2015b) Hyperacusis following unilateral damage to the insular cortex: a three-case report. Brain Res 1606:102–112PubMedCrossRef
Zurück zum Zitat Brandt ME (1997) Visual and auditory evoked phase resetting of the alpha EEG. Int J Psychophysiol 26:285–298PubMedCrossRef Brandt ME (1997) Visual and auditory evoked phase resetting of the alpha EEG. Int J Psychophysiol 26:285–298PubMedCrossRef
Zurück zum Zitat Britton JC, Taylor SF, Sudheimer KD, Liberzon I (2006) Facial expressions and complex IAPS pictures: common and differential networks. Neuroimage 31:906–919PubMedCrossRef Britton JC, Taylor SF, Sudheimer KD, Liberzon I (2006) Facial expressions and complex IAPS pictures: common and differential networks. Neuroimage 31:906–919PubMedCrossRef
Zurück zum Zitat Canolty RT, Edwards E, Dalal SS, Soltani M, Nagarajan SS, Kirsch HE, Berger MS, Barbaro NM, Knight RT (2006) High gamma power is phase-locked to theta oscillations in human neocortex. J Neurosci 313:1626–1628 Canolty RT, Edwards E, Dalal SS, Soltani M, Nagarajan SS, Kirsch HE, Berger MS, Barbaro NM, Knight RT (2006) High gamma power is phase-locked to theta oscillations in human neocortex. J Neurosci 313:1626–1628
Zurück zum Zitat Cereda C, Ghika J, Maeder P, Bogousslavsky J (2002) Strokes restricted to the insular cortex. Neurology 59:1950–1955PubMedCrossRef Cereda C, Ghika J, Maeder P, Bogousslavsky J (2002) Strokes restricted to the insular cortex. Neurology 59:1950–1955PubMedCrossRef
Zurück zum Zitat Cervenka MC, Nagle S, Boatman-Reich D (2011) Cortical high-gamma responses in auditory processing. Am J Audiol 20:171–180PubMedCrossRef Cervenka MC, Nagle S, Boatman-Reich D (2011) Cortical high-gamma responses in auditory processing. Am J Audiol 20:171–180PubMedCrossRef
Zurück zum Zitat Chen T, Michels L, Supekar K, Kochalka J, Ryali S, Menon V (2015) Role of the anterior insular cortex in integrative causal signaling during multisensory auditory-visual attention. Eur J Neurosci 41:264–274PubMedCrossRef Chen T, Michels L, Supekar K, Kochalka J, Ryali S, Menon V (2015) Role of the anterior insular cortex in integrative causal signaling during multisensory auditory-visual attention. Eur J Neurosci 41:264–274PubMedCrossRef
Zurück zum Zitat Citherlet D, Boucher O, Tremblay J, Robert M, Gallagher A, Bouthillier A, Lepore F, Nguyen DK (2019) Role of the insula in top-down processing: an intracranial EEG study using a visual oddball detection paradigm. Brain Struct Funct 224:2045–2059PubMedCrossRef Citherlet D, Boucher O, Tremblay J, Robert M, Gallagher A, Bouthillier A, Lepore F, Nguyen DK (2019) Role of the insula in top-down processing: an intracranial EEG study using a visual oddball detection paradigm. Brain Struct Funct 224:2045–2059PubMedCrossRef
Zurück zum Zitat Clark VP, Fannon S, Lai S, Benson R, Bauer L (2000) Responses to rare visual target and distractor stimuli using event-related fMRI. J Neurophysiol 83:3133–3139PubMedCrossRef Clark VP, Fannon S, Lai S, Benson R, Bauer L (2000) Responses to rare visual target and distractor stimuli using event-related fMRI. J Neurophysiol 83:3133–3139PubMedCrossRef
Zurück zum Zitat Comerchero MD, Polich J (1999) P3a and P3b from typical auditory and visual stimuli. Clin Neurophysiol 110:24–30PubMedCrossRef Comerchero MD, Polich J (1999) P3a and P3b from typical auditory and visual stimuli. Clin Neurophysiol 110:24–30PubMedCrossRef
Zurück zum Zitat Craig AD (2003) Interoception: the sense of the physiological condition of the body. Curr Opin Neurobiol 13:500–505PubMedCrossRef Craig AD (2003) Interoception: the sense of the physiological condition of the body. Curr Opin Neurobiol 13:500–505PubMedCrossRef
Zurück zum Zitat Crone NE, Boatman D, Gordon B, Hao L (2001) Induced electrocorticographic gamma activity during auditory perception. Brazier award-winning article, 2001. Clin Neurophysiol 112:565–582PubMedCrossRef Crone NE, Boatman D, Gordon B, Hao L (2001) Induced electrocorticographic gamma activity during auditory perception. Brazier award-winning article, 2001. Clin Neurophysiol 112:565–582PubMedCrossRef
Zurück zum Zitat Crone NE, Korzeniewska A, Franaszczuk PJ (2011) Cortical gamma responses: searching high and low. Int J Psychophysiol 79(1):9–15PubMedCrossRef Crone NE, Korzeniewska A, Franaszczuk PJ (2011) Cortical gamma responses: searching high and low. Int J Psychophysiol 79(1):9–15PubMedCrossRef
Zurück zum Zitat Debener S, Herrmann CS, Kranczioch C, Gembris D, Engel AK (2003) Top-down attentional processing enhances auditory evoked gamma band activity. NeuroReport 14:683–686PubMedCrossRef Debener S, Herrmann CS, Kranczioch C, Gembris D, Engel AK (2003) Top-down attentional processing enhances auditory evoked gamma band activity. NeuroReport 14:683–686PubMedCrossRef
Zurück zum Zitat Demiralp T, Basar E (1992) Theta rhythmicities following expected visual and auditory targets. Int J Psychophysiol 13:147–160PubMedCrossRef Demiralp T, Basar E (1992) Theta rhythmicities following expected visual and auditory targets. Int J Psychophysiol 13:147–160PubMedCrossRef
Zurück zum Zitat Demiralp T, Ademoglu A, Istefanopulos Y, Basar-Eroglu C, Basar E (2001) Wavelet analysis of oddball P300. Int J Psychophysiol 39:221–227PubMedCrossRef Demiralp T, Ademoglu A, Istefanopulos Y, Basar-Eroglu C, Basar E (2001) Wavelet analysis of oddball P300. Int J Psychophysiol 39:221–227PubMedCrossRef
Zurück zum Zitat Donchin E, Coles MG (1988) Is the P300 component a manifestation of context updating? Behav Brain Sci 11:357–374CrossRef Donchin E, Coles MG (1988) Is the P300 component a manifestation of context updating? Behav Brain Sci 11:357–374CrossRef
Zurück zum Zitat Dosenbach NU, Visscher KM, Palmer ED, Miezin FM, Wenger KK, Kang HC, Burgund ED, Grimes AL, Schlaggar BL, Petersen SE (2006) A core system for the implementation of task sets. Neuron 50:799–812PubMedPubMedCentralCrossRef Dosenbach NU, Visscher KM, Palmer ED, Miezin FM, Wenger KK, Kang HC, Burgund ED, Grimes AL, Schlaggar BL, Petersen SE (2006) A core system for the implementation of task sets. Neuron 50:799–812PubMedPubMedCentralCrossRef
Zurück zum Zitat Downar J, Crawley AP, Mikulis DJ, Davis KD (2000) A multimodal cortical network for the detection of changes in the sensory environment. Nat Neurosci 3:277–283PubMedCrossRef Downar J, Crawley AP, Mikulis DJ, Davis KD (2000) A multimodal cortical network for the detection of changes in the sensory environment. Nat Neurosci 3:277–283PubMedCrossRef
Zurück zum Zitat Edwards E, Soltani M, Deouell LY, Berger MS, Knight RT (2005) High gamma activity in response to deviant auditory stimuli recorded directly from human cortex. J Neurophysiol 94:4269–4280PubMedCrossRef Edwards E, Soltani M, Deouell LY, Berger MS, Knight RT (2005) High gamma activity in response to deviant auditory stimuli recorded directly from human cortex. J Neurophysiol 94:4269–4280PubMedCrossRef
Zurück zum Zitat Engelien A, Silbersweig D, Stern E, Huber W, Doring W, Frith C, Frackowiak RS (1995) The functional anatomy of recovery from auditory agnosia. A PET study of sound categorization in a neurological patient and normal controls. Brain 118:1395–1409PubMedCrossRef Engelien A, Silbersweig D, Stern E, Huber W, Doring W, Frith C, Frackowiak RS (1995) The functional anatomy of recovery from auditory agnosia. A PET study of sound categorization in a neurological patient and normal controls. Brain 118:1395–1409PubMedCrossRef
Zurück zum Zitat Fell J, Fernandez G, Klaver P, Elger CE, Fries P (2003) Is synchronized neuronal gamma activity relevant for selective attention? J Brain Res Rev 42:265–272CrossRef Fell J, Fernandez G, Klaver P, Elger CE, Fries P (2003) Is synchronized neuronal gamma activity relevant for selective attention? J Brain Res Rev 42:265–272CrossRef
Zurück zum Zitat Fell J, Dietl T, Grunwald T, Kurthen M, Klaver P, Trautner P, Schaller C, Elger CE, Fernandez G (2004) Neural bases of cognitive ERPs: more than phase reset. J Cogn Neurosci 16:1595–1604PubMedCrossRef Fell J, Dietl T, Grunwald T, Kurthen M, Klaver P, Trautner P, Schaller C, Elger CE, Fernandez G (2004) Neural bases of cognitive ERPs: more than phase reset. J Cogn Neurosci 16:1595–1604PubMedCrossRef
Zurück zum Zitat Fifer RC (1993) Insular stroke causing unilateral auditory processing disorder: case report. J Am Acad Audiol 4:364–369PubMed Fifer RC (1993) Insular stroke causing unilateral auditory processing disorder: case report. J Am Acad Audiol 4:364–369PubMed
Zurück zum Zitat Flynn FGJA (1999) Anatomy of the insula functional and clinical correlates. Aphasiology 13:55–78CrossRef Flynn FGJA (1999) Anatomy of the insula functional and clinical correlates. Aphasiology 13:55–78CrossRef
Zurück zum Zitat Foxe JJ, Snyder AC (2011) The role of alpha-band brain oscillations as a sensory suppression mechanism during selective attention. J Front Psychol 2:154 Foxe JJ, Snyder AC (2011) The role of alpha-band brain oscillations as a sensory suppression mechanism during selective attention. J Front Psychol 2:154
Zurück zum Zitat Friedman D, Cycowicz YM, Gaeta H (2001) The novelty P3: an event-related brain potential (ERP) sign of the brain’s evaluation of novelty. Neurosci Biobehav Rev 25:355–373PubMedCrossRef Friedman D, Cycowicz YM, Gaeta H (2001) The novelty P3: an event-related brain potential (ERP) sign of the brain’s evaluation of novelty. Neurosci Biobehav Rev 25:355–373PubMedCrossRef
Zurück zum Zitat Fries P, Reynolds JH, Rorie AE, Desimone R (2001) Modulation of oscillatory neuronal synchronization by selective visual attention. Science 291:1560–1563PubMedCrossRef Fries P, Reynolds JH, Rorie AE, Desimone R (2001) Modulation of oscillatory neuronal synchronization by selective visual attention. Science 291:1560–1563PubMedCrossRef
Zurück zum Zitat Galan L, Biscay R, Rodriguez JL, Perez-Abalo MC, Rodriguez R (1997) Testing topographic differences between event related brain potentials by using non-parametric combinations of permutation tests. Electroencephalogr Clin Neurophysiol 102:240–247PubMedCrossRef Galan L, Biscay R, Rodriguez JL, Perez-Abalo MC, Rodriguez R (1997) Testing topographic differences between event related brain potentials by using non-parametric combinations of permutation tests. Electroencephalogr Clin Neurophysiol 102:240–247PubMedCrossRef
Zurück zum Zitat Ghaziri J, Tucholka A, Girard G, Houde JC, Boucher O, Gilbert G, Descoteaux M, Lippe S, Rainville P, Nguyen DK (2017) The corticocortical structural connectivity of the human insula. Cereb Cortex 27:1216–1228PubMedCrossRef Ghaziri J, Tucholka A, Girard G, Houde JC, Boucher O, Gilbert G, Descoteaux M, Lippe S, Rainville P, Nguyen DK (2017) The corticocortical structural connectivity of the human insula. Cereb Cortex 27:1216–1228PubMedCrossRef
Zurück zum Zitat Ghaziri J, Tucholka A, Girard G, Boucher O, Houde J-C, Descoteaux M, Obaid S, Gilbert G, Rouleau I, Nguyen DK (2018) Subcortical structural connectivity of insular subregions. J Sci Rep 8:1–12CrossRef Ghaziri J, Tucholka A, Girard G, Boucher O, Houde J-C, Descoteaux M, Obaid S, Gilbert G, Rouleau I, Nguyen DK (2018) Subcortical structural connectivity of insular subregions. J Sci Rep 8:1–12CrossRef
Zurück zum Zitat Griffiths TD, Warren JD, Dean JL, Howard D (2004) “When the feeling’s gone”: a selective loss of musical emotion. J Neurol Neurosurg Psychiatry 75:344–345PubMedPubMedCentral Griffiths TD, Warren JD, Dean JL, Howard D (2004) “When the feeling’s gone”: a selective loss of musical emotion. J Neurol Neurosurg Psychiatry 75:344–345PubMedPubMedCentral
Zurück zum Zitat Habib M, Daquin G, Milandre L, Royere ML, Rey M, Lanteri A, Salamon G, Khalil R (1995) Mutism and auditory agnosia due to bilateral insular damage—role of the insula in human communication. Neuropsychologia 33:327–339PubMedCrossRef Habib M, Daquin G, Milandre L, Royere ML, Rey M, Lanteri A, Salamon G, Khalil R (1995) Mutism and auditory agnosia due to bilateral insular damage—role of the insula in human communication. Neuropsychologia 33:327–339PubMedCrossRef
Zurück zum Zitat Halgren E, Baudena P, Clarke JM, Heit G, Liegeois C, Chauvel P, Musolino A (1995a) Intracerebral potentials to rare target and distractor auditory and visual stimuli. I. Superior temporal plane and parietal lobe. Electroencephalogr Clin Neurophysiol 94:191–220PubMedCrossRef Halgren E, Baudena P, Clarke JM, Heit G, Liegeois C, Chauvel P, Musolino A (1995a) Intracerebral potentials to rare target and distractor auditory and visual stimuli. I. Superior temporal plane and parietal lobe. Electroencephalogr Clin Neurophysiol 94:191–220PubMedCrossRef
Zurück zum Zitat Halgren E, Baudena P, Clarke JM, Heit G, Marinkovic K, Devaux B, Vignal J-P, Biraben AJE, neurophysiology c (1995b) Intracerebral potentials to rare target and distractor auditory and visual stimuli. II. Medial, lateral and posterior temporal lobe. Electroencephalogr Clin Neurophysiol 94:229–250PubMedCrossRef Halgren E, Baudena P, Clarke JM, Heit G, Marinkovic K, Devaux B, Vignal J-P, Biraben AJE, neurophysiology c (1995b) Intracerebral potentials to rare target and distractor auditory and visual stimuli. II. Medial, lateral and posterior temporal lobe. Electroencephalogr Clin Neurophysiol 94:229–250PubMedCrossRef
Zurück zum Zitat Halgren E, Marinkovic K, Chauvel P (1998) Generators of the late cognitive potentials in auditory and visual oddball tasks. Electroencephalogr Clin Neurophysiol 106:156–164PubMedCrossRef Halgren E, Marinkovic K, Chauvel P (1998) Generators of the late cognitive potentials in auditory and visual oddball tasks. Electroencephalogr Clin Neurophysiol 106:156–164PubMedCrossRef
Zurück zum Zitat Hanslmayr S, Klimesch W, Sauseng P, Gruber W, Doppelmayr M, Freunberger R, Pecherstorfer T, Birbaumer N (2007) Alpha phase reset contributes to the generation of ERPs. Cereb Cortex 17:1–8PubMedCrossRef Hanslmayr S, Klimesch W, Sauseng P, Gruber W, Doppelmayr M, Freunberger R, Pecherstorfer T, Birbaumer N (2007) Alpha phase reset contributes to the generation of ERPs. Cereb Cortex 17:1–8PubMedCrossRef
Zurück zum Zitat Herrmann CS, Knight RT (2001) Mechanisms of human attention: event-related potentials and oscillations. Neurosci Biobehav Rev 25:465–476PubMedCrossRef Herrmann CS, Knight RT (2001) Mechanisms of human attention: event-related potentials and oscillations. Neurosci Biobehav Rev 25:465–476PubMedCrossRef
Zurück zum Zitat Hsiao F-J, Wu Z-A, Ho L-T, Lin Y-Y (2009) Theta oscillation during auditory change detection: an MEG study. J Biol Psychol 81:58–66CrossRef Hsiao F-J, Wu Z-A, Ho L-T, Lin Y-Y (2009) Theta oscillation during auditory change detection: an MEG study. J Biol Psychol 81:58–66CrossRef
Zurück zum Zitat Hyman BT, Tranel D (1989) Hemianesthesia and aphasia. An anatomical and behavioral study. Arch Neurol 46:816–819PubMedCrossRef Hyman BT, Tranel D (1989) Hemianesthesia and aphasia. An anatomical and behavioral study. Arch Neurol 46:816–819PubMedCrossRef
Zurück zum Zitat Isnard J, Guenot M, Sindou M, Mauguiere F (2004) Clinical manifestations of insular lobe seizures: a stereo-electroencephalographic study. Epilepsia 45:1079–1090PubMedCrossRef Isnard J, Guenot M, Sindou M, Mauguiere F (2004) Clinical manifestations of insular lobe seizures: a stereo-electroencephalographic study. Epilepsia 45:1079–1090PubMedCrossRef
Zurück zum Zitat Jensen O, Kaiser J, Lachaux JP (2007) Human gamma-frequency oscillations associated with attention and memory. Trends Neurosci 30:317–324PubMedCrossRef Jensen O, Kaiser J, Lachaux JP (2007) Human gamma-frequency oscillations associated with attention and memory. Trends Neurosci 30:317–324PubMedCrossRef
Zurück zum Zitat Jokisch D, Jensen O (2007) Modulation of gamma and alpha activity during a working memory task engaging the dorsal or ventral stream. J J Neurosci 27:3244–3251CrossRef Jokisch D, Jensen O (2007) Modulation of gamma and alpha activity during a working memory task engaging the dorsal or ventral stream. J J Neurosci 27:3244–3251CrossRef
Zurück zum Zitat Jones EG, Burton H (1976) Areal differences in the laminar distribution of thalamic afferents in cortical fields of the insular, parietal and temporal regions of primates. J Comp Neurol 168:197–247PubMedCrossRef Jones EG, Burton H (1976) Areal differences in the laminar distribution of thalamic afferents in cortical fields of the insular, parietal and temporal regions of primates. J Comp Neurol 168:197–247PubMedCrossRef
Zurück zum Zitat Kaiser J, Lutzenberger W, Ackermann H, Birbaumer N (2002) Dynamics of gamma-band activity induced by auditory pattern changes in humans. Cereb Cortex 12:212–221PubMedCrossRef Kaiser J, Lutzenberger W, Ackermann H, Birbaumer N (2002) Dynamics of gamma-band activity induced by auditory pattern changes in humans. Cereb Cortex 12:212–221PubMedCrossRef
Zurück zum Zitat Karakaş S, Erzengin ÖU, Başar E (2000) A new strategy involving multiple cognitive paradigms demonstrates that ERP components are determined by the superposition of oscillatory responses. J Clin Neurophysiol 111:1719–1732CrossRef Karakaş S, Erzengin ÖU, Başar E (2000) A new strategy involving multiple cognitive paradigms demonstrates that ERP components are determined by the superposition of oscillatory responses. J Clin Neurophysiol 111:1719–1732CrossRef
Zurück zum Zitat Karrasch M, Krause CM, Laine M, Lang AH, Lehto M (1998) Event-related desynchronization and synchronization during an auditory lexical matching task. J Electroencephalogr Clin Neurophysiol 107:112–121CrossRef Karrasch M, Krause CM, Laine M, Lang AH, Lehto M (1998) Event-related desynchronization and synchronization during an auditory lexical matching task. J Electroencephalogr Clin Neurophysiol 107:112–121CrossRef
Zurück zum Zitat Kiehl KA, Laurens KR, Duty TL, Forster BB, Liddle PF (2001) Neural sources involved in auditory target detection and novelty processing: an event-related fMRI study. Psychophysiology 38:133–142PubMedCrossRef Kiehl KA, Laurens KR, Duty TL, Forster BB, Liddle PF (2001) Neural sources involved in auditory target detection and novelty processing: an event-related fMRI study. Psychophysiology 38:133–142PubMedCrossRef
Zurück zum Zitat Klimesch W (2012) Alpha-band oscillations, attention, and controlled access to stored information. J Trends Cogn Sci 16:606–617CrossRef Klimesch W (2012) Alpha-band oscillations, attention, and controlled access to stored information. J Trends Cogn Sci 16:606–617CrossRef
Zurück zum Zitat Klimesch W, Doppelmayr M, Röhm D, Pöllhuber D, Stadler W (2000) Simultaneous desynchronization and synchronization of different alpha responses in the human electroencephalograph: a neglected paradox? J Neurosci Lett 284:97–100CrossRef Klimesch W, Doppelmayr M, Röhm D, Pöllhuber D, Stadler W (2000) Simultaneous desynchronization and synchronization of different alpha responses in the human electroencephalograph: a neglected paradox? J Neurosci Lett 284:97–100CrossRef
Zurück zum Zitat Klimesch W, Schabus M, Doppelmayr M, Gruber W, Sauseng P (2004a) Evoked oscillations and early components of event-related potentials: an analysis. J Int J Bifurc Chaos 14:705–718CrossRef Klimesch W, Schabus M, Doppelmayr M, Gruber W, Sauseng P (2004a) Evoked oscillations and early components of event-related potentials: an analysis. J Int J Bifurc Chaos 14:705–718CrossRef
Zurück zum Zitat Klimesch W, Schack B, Schabus M, Doppelmayr M, Gruber W, Sauseng P (2004b) Phase-locked alpha and theta oscillations generate the P1–N1 complex and are related to memory performance. J Cogn Brain Res 19:302–316CrossRef Klimesch W, Schack B, Schabus M, Doppelmayr M, Gruber W, Sauseng P (2004b) Phase-locked alpha and theta oscillations generate the P1–N1 complex and are related to memory performance. J Cogn Brain Res 19:302–316CrossRef
Zurück zum Zitat Ko D, Kwon S, Lee GT, Im CH, Kim KH, Jung KY (2012) Theta oscillation related to the auditory discrimination process in mismatch negativity: oddball versus control paradigm. J Clin Neurol 8:35–42PubMedPubMedCentralCrossRef Ko D, Kwon S, Lee GT, Im CH, Kim KH, Jung KY (2012) Theta oscillation related to the auditory discrimination process in mismatch negativity: oddball versus control paradigm. J Clin Neurol 8:35–42PubMedPubMedCentralCrossRef
Zurück zum Zitat Koelsch S, Skouras S, Lohmann G (2018) The auditory cortex hosts network nodes influential for emotion processing: an fMRI study on music-evoked fear and joy. PLoS ONE 13:1–22CrossRef Koelsch S, Skouras S, Lohmann G (2018) The auditory cortex hosts network nodes influential for emotion processing: an fMRI study on music-evoked fear and joy. PLoS ONE 13:1–22CrossRef
Zurück zum Zitat Kosillo P, Smith AT (2010) The role of the human anterior insular cortex in time processing. Brain Struct Funct 214:623–628PubMedCrossRef Kosillo P, Smith AT (2010) The role of the human anterior insular cortex in time processing. Brain Struct Funct 214:623–628PubMedCrossRef
Zurück zum Zitat Krause CM, Lang HA, Laine M, Helle SI, Kuusisto MJ, Pörn B (1994) Event-related desynchronization evoked by auditory stimuli. J Brain Topogr 7:107–112CrossRef Krause CM, Lang HA, Laine M, Helle SI, Kuusisto MJ, Pörn B (1994) Event-related desynchronization evoked by auditory stimuli. J Brain Topogr 7:107–112CrossRef
Zurück zum Zitat Krause CM, Lang AH, Laine M, Kuusisto M, Pörn B (1996) Event-related. EEG desynchronization and synchronization during an auditory memory task. J Electroencephalogr Clin Neurophysiol 98:319–326CrossRef Krause CM, Lang AH, Laine M, Kuusisto M, Pörn B (1996) Event-related. EEG desynchronization and synchronization during an auditory memory task. J Electroencephalogr Clin Neurophysiol 98:319–326CrossRef
Zurück zum Zitat Kurth F, Zilles K, Fox PT, Laird AR, Eickhoff SB (2010) A link between the systems: functional differentiation and integration within the human insula revealed by meta-analysis. Brain Struct Funct 214:519–534PubMedPubMedCentralCrossRef Kurth F, Zilles K, Fox PT, Laird AR, Eickhoff SB (2010) A link between the systems: functional differentiation and integration within the human insula revealed by meta-analysis. Brain Struct Funct 214:519–534PubMedPubMedCentralCrossRef
Zurück zum Zitat Lachaux JP, Rudrauf D, Kahane P (2003) Intracranial EEG and human brain mapping. J Physiol Paris 97:613–628PubMedCrossRef Lachaux JP, Rudrauf D, Kahane P (2003) Intracranial EEG and human brain mapping. J Physiol Paris 97:613–628PubMedCrossRef
Zurück zum Zitat Lachaux JP, Axmacher N, Mormann F, Halgren E, Crone NE (2012) High-frequency neural activity and human cognition: past, present and possible future of intracranial EEG research. Prog Neurobiol 98:279–301PubMedPubMedCentralCrossRef Lachaux JP, Axmacher N, Mormann F, Halgren E, Crone NE (2012) High-frequency neural activity and human cognition: past, present and possible future of intracranial EEG research. Prog Neurobiol 98:279–301PubMedPubMedCentralCrossRef
Zurück zum Zitat Lancaster JL, Woldorff MG, Parsons LM, Liotti M, Freitas CS, Rainey L, Kochunov PV, Nickerson D, Mikiten SA, Fox PTJHBM (2000) Automated talairach atlas labels for functional brain mapping. Hum Brain Mapp 10:120–131PubMedCrossRefPubMedCentral Lancaster JL, Woldorff MG, Parsons LM, Liotti M, Freitas CS, Rainey L, Kochunov PV, Nickerson D, Mikiten SA, Fox PTJHBM (2000) Automated talairach atlas labels for functional brain mapping. Hum Brain Mapp 10:120–131PubMedCrossRefPubMedCentral
Zurück zum Zitat Linden DE (2005) The p300: where in the brain is it produced and what does it tell us? Neuroscientist 11:563–576PubMedCrossRef Linden DE (2005) The p300: where in the brain is it produced and what does it tell us? Neuroscientist 11:563–576PubMedCrossRef
Zurück zum Zitat Linden DE, Prvulovic D, Formisano E, Vollinger M, Zanella FE, Goebel R, Dierks T (1999) The functional neuroanatomy of target detection: an fMRI study of visual and auditory oddball tasks. Cereb Cortex 9:815–823PubMedCrossRef Linden DE, Prvulovic D, Formisano E, Vollinger M, Zanella FE, Goebel R, Dierks T (1999) The functional neuroanatomy of target detection: an fMRI study of visual and auditory oddball tasks. Cereb Cortex 9:815–823PubMedCrossRef
Zurück zum Zitat Marshall L, Mölle M, Bartsch P (1996) Event-related gamma band activity during passive and active oddball tasks. J Neuroreport 7:1517–1520CrossRef Marshall L, Mölle M, Bartsch P (1996) Event-related gamma band activity during passive and active oddball tasks. J Neuroreport 7:1517–1520CrossRef
Zurück zum Zitat Mazzola L, Lopez C, Faillenot I, Chouchou F, Mauguiere F, Isnard J (2014) Vestibular responses to direct stimulation of the human insular cortex. Ann Neurol 76:609–619PubMedCrossRef Mazzola L, Lopez C, Faillenot I, Chouchou F, Mauguiere F, Isnard J (2014) Vestibular responses to direct stimulation of the human insular cortex. Ann Neurol 76:609–619PubMedCrossRef
Zurück zum Zitat Mormann F, Fell J, Axmacher N, Weber B, Lehnertz K, Elger CE, Fernandez G (2005) Phase/amplitude reset and theta-gamma interaction in the human medial temporal lobe during a continuous word recognition memory task. Hippocampus 15:890–900PubMedCrossRef Mormann F, Fell J, Axmacher N, Weber B, Lehnertz K, Elger CE, Fernandez G (2005) Phase/amplitude reset and theta-gamma interaction in the human medial temporal lobe during a continuous word recognition memory task. Hippocampus 15:890–900PubMedCrossRef
Zurück zum Zitat Mulert C, Pogarell O, Juckel G, Rujescu D, Giegling I, Rupp D, Mavrogiorgou P, Bussfeld P, Gallinat J, Moller HJ et al (2004) The neural basis of the P300 potential. Focus on the time-course of the underlying cortical generators. Eur Arch Psychiatry Clin Neurosci 254:190–198PubMedCrossRef Mulert C, Pogarell O, Juckel G, Rujescu D, Giegling I, Rupp D, Mavrogiorgou P, Bussfeld P, Gallinat J, Moller HJ et al (2004) The neural basis of the P300 potential. Focus on the time-course of the underlying cortical generators. Eur Arch Psychiatry Clin Neurosci 254:190–198PubMedCrossRef
Zurück zum Zitat Näätänen R, Picton T (1987) The N1 wave of the human electric and magnetic response to sound: a review and an analysis of the component structure. Psychophysiology 24:375–425PubMedCrossRef Näätänen R, Picton T (1987) The N1 wave of the human electric and magnetic response to sound: a review and an analysis of the component structure. Psychophysiology 24:375–425PubMedCrossRef
Zurück zum Zitat Nagai M, Hoshide S, Kario K (2010) The insular cortex and cardiovascular system: a new insight into the brain-heart axis. J Am Soc Hypertens 4:174–182PubMedCrossRef Nagai M, Hoshide S, Kario K (2010) The insular cortex and cardiovascular system: a new insight into the brain-heart axis. J Am Soc Hypertens 4:174–182PubMedCrossRef
Zurück zum Zitat Nelson SM, Dosenbach NU, Cohen AL, Wheeler ME, Schlaggar BL, Petersen SE (2010) Role of the anterior insula in task-level control and focal attention. Brain Struct Funct 214:669–680PubMedPubMedCentralCrossRef Nelson SM, Dosenbach NU, Cohen AL, Wheeler ME, Schlaggar BL, Petersen SE (2010) Role of the anterior insula in task-level control and focal attention. Brain Struct Funct 214:669–680PubMedPubMedCentralCrossRef
Zurück zum Zitat Nguyen DK, Nguyen DB, Malak R, Leroux JM, Carmant L, Saint-Hilaire JM, Giard N, Cossette P, Bouthillier A (2009) Revisiting the role of the insula in refractory partial epilepsy. Epilepsia 50:510–520PubMedCrossRef Nguyen DK, Nguyen DB, Malak R, Leroux JM, Carmant L, Saint-Hilaire JM, Giard N, Cossette P, Bouthillier A (2009) Revisiting the role of the insula in refractory partial epilepsy. Epilepsia 50:510–520PubMedCrossRef
Zurück zum Zitat Obaid S, Zerouali Y, Nguyen DK (2017) Insular epilepsy: semiology and noninvasive investigations. J Clin Neurophysiol 34:315–323PubMedCrossRef Obaid S, Zerouali Y, Nguyen DK (2017) Insular epilepsy: semiology and noninvasive investigations. J Clin Neurophysiol 34:315–323PubMedCrossRef
Zurück zum Zitat Öniz A, Başar E (2009) Prolongation of alpha oscillations in auditory oddball paradigm. J Int J Psychophysiol 71:235–241CrossRef Öniz A, Başar E (2009) Prolongation of alpha oscillations in auditory oddball paradigm. J Int J Psychophysiol 71:235–241CrossRef
Zurück zum Zitat Oppenheimer SM, Gelb A, Girvin JP, Hachinski VC (1992) Cardiovascular effects of human insular cortex stimulation. Neurology 42:1727–1732CrossRefPubMed Oppenheimer SM, Gelb A, Girvin JP, Hachinski VC (1992) Cardiovascular effects of human insular cortex stimulation. Neurology 42:1727–1732CrossRefPubMed
Zurück zum Zitat Pastor MA, Macaluso E, Day BL, Frackowiak RS (2006) The neural basis of temporal auditory discrimination. Neuroimage 30:512–520PubMedCrossRef Pastor MA, Macaluso E, Day BL, Frackowiak RS (2006) The neural basis of temporal auditory discrimination. Neuroimage 30:512–520PubMedCrossRef
Zurück zum Zitat Paulus MP, Rogalsky C, Simmons A, Feinstein JS, Stein MB (2003) Increased activation in the right insula during risk-taking decision making is related to harm avoidance and neuroticism. Neuroimage 19:1439–1448PubMedCrossRef Paulus MP, Rogalsky C, Simmons A, Feinstein JS, Stein MB (2003) Increased activation in the right insula during risk-taking decision making is related to harm avoidance and neuroticism. Neuroimage 19:1439–1448PubMedCrossRef
Zurück zum Zitat Peretz I, Kolinsky R, Tramo M, Labrecque R, Hublet C, Demeurisse G, Belleville S (1994) Functional dissociations following bilateral lesions of auditory cortex. Brain 117:1283–1301PubMedCrossRef Peretz I, Kolinsky R, Tramo M, Labrecque R, Hublet C, Demeurisse G, Belleville S (1994) Functional dissociations following bilateral lesions of auditory cortex. Brain 117:1283–1301PubMedCrossRef
Zurück zum Zitat Phan KL, Taylor SF, Welsh RC, Ho SH, Britton JC, Liberzon I (2004) Neural correlates of individual ratings of emotional salience: a trial-related fMRI study. Neuroimage 21:768–780PubMedCrossRef Phan KL, Taylor SF, Welsh RC, Ho SH, Britton JC, Liberzon I (2004) Neural correlates of individual ratings of emotional salience: a trial-related fMRI study. Neuroimage 21:768–780PubMedCrossRef
Zurück zum Zitat Picton TW, Alain C, Woods DL, John MS, Scherg M, Valdes-Sosa P, Bosch-Bayard J, Trujillo NJ (1999) Intracerebral sources of human auditory-evoked potentials. Audiol Neurootol 4:64–79PubMedCrossRef Picton TW, Alain C, Woods DL, John MS, Scherg M, Valdes-Sosa P, Bosch-Bayard J, Trujillo NJ (1999) Intracerebral sources of human auditory-evoked potentials. Audiol Neurootol 4:64–79PubMedCrossRef
Zurück zum Zitat Polich J, Kok A (1995) Cognitive and biological determinants of P300: an integrative review. Biol Psychol 41:103–146PubMedCrossRef Polich J, Kok A (1995) Cognitive and biological determinants of P300: an integrative review. Biol Psychol 41:103–146PubMedCrossRef
Zurück zum Zitat Posner MI, Snyder CR, Davidson BJ (1980) Attention and the detection of signals. J Exp Psychol 109:160–174PubMedCrossRef Posner MI, Snyder CR, Davidson BJ (1980) Attention and the detection of signals. J Exp Psychol 109:160–174PubMedCrossRef
Zurück zum Zitat Pugnaghi M, Meletti S, Castana L, Francione S, Nobili L, Mai R, Tassi L (2011) Features of somatosensory manifestations induced by intracranial electrical stimulations of the human insula. Clin Neurophysiol 122:2049–2058PubMedCrossRef Pugnaghi M, Meletti S, Castana L, Francione S, Nobili L, Mai R, Tassi L (2011) Features of somatosensory manifestations induced by intracranial electrical stimulations of the human insula. Clin Neurophysiol 122:2049–2058PubMedCrossRef
Zurück zum Zitat Ranganath C, Rainer GJNRN (2003) Cognitive neuroscience: neural mechanisms for detecting and remembering novel events. Nat Rev Neurosci 4:193PubMedCrossRef Ranganath C, Rainer GJNRN (2003) Cognitive neuroscience: neural mechanisms for detecting and remembering novel events. Nat Rev Neurosci 4:193PubMedCrossRef
Zurück zum Zitat Rao SM, Mayer AR, Harrington DL (2001) The evolution of brain activation during temporal processing. Nat Neurosci 4:317–323PubMedCrossRef Rao SM, Mayer AR, Harrington DL (2001) The evolution of brain activation during temporal processing. Nat Neurosci 4:317–323PubMedCrossRef
Zurück zum Zitat Ray S, Niebur E, Hsiao SS, Sinai A, Crone NE (2008) High-frequency gamma activity (80–150Hz) is increased in human cortex during selective attention. Clin Neurophysiol 119:116–133PubMedCrossRef Ray S, Niebur E, Hsiao SS, Sinai A, Crone NE (2008) High-frequency gamma activity (80–150Hz) is increased in human cortex during selective attention. Clin Neurophysiol 119:116–133PubMedCrossRef
Zurück zum Zitat Sauseng P, Klimesch W, Freunberger R, Pecherstorfer T, Hanslmayr S, Doppelmayr M (2006) Relevance of EEG alpha and theta oscillations during task switching. Exp Brain Res 170:295–301PubMedCrossRef Sauseng P, Klimesch W, Freunberger R, Pecherstorfer T, Hanslmayr S, Doppelmayr M (2006) Relevance of EEG alpha and theta oscillations during task switching. Exp Brain Res 170:295–301PubMedCrossRef
Zurück zum Zitat Schroeder CE, Lakatos P (2009) Low-frequency neuronal oscillations as instruments of sensory selection. Trends Neurosci 32:9–18PubMedCrossRef Schroeder CE, Lakatos P (2009) Low-frequency neuronal oscillations as instruments of sensory selection. Trends Neurosci 32:9–18PubMedCrossRef
Zurück zum Zitat Schürmann M, Başar E (1994) Topography of alpha and theta oscillatory responses upon auditory and visual stimuli in humans. J Biol Cybern 72:161–174CrossRef Schürmann M, Başar E (1994) Topography of alpha and theta oscillatory responses upon auditory and visual stimuli in humans. J Biol Cybern 72:161–174CrossRef
Zurück zum Zitat Snyder E, Hillyard SA (1976) Long-latency evoked potentials to irrelevant, deviant stimuli. Behav Biol 16:319–331PubMedCrossRef Snyder E, Hillyard SA (1976) Long-latency evoked potentials to irrelevant, deviant stimuli. Behav Biol 16:319–331PubMedCrossRef
Zurück zum Zitat Spreen O, Benton AL, Fincham RW (1965) Auditory agnosia without aphasia. Arch Neurol 13:84–92PubMedCrossRef Spreen O, Benton AL, Fincham RW (1965) Auditory agnosia without aphasia. Arch Neurol 13:84–92PubMedCrossRef
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 38:387–401PubMedCrossRef Squires NK, Squires KC, Hillyard SA (1975) Two varieties of long-latency positive waves evoked by unpredictable auditory stimuli in man. Electroencephalogr Clin Neurophysiol 38:387–401PubMedCrossRef
Zurück zum Zitat Stevens AA, Skudlarski P, Gatenby JC, Gore JC (2000) Event-related fMRI of auditory and visual oddball tasks. Magn Reson Imaging 18:495–502PubMedCrossRef Stevens AA, Skudlarski P, Gatenby JC, Gore JC (2000) Event-related fMRI of auditory and visual oddball tasks. Magn Reson Imaging 18:495–502PubMedCrossRef
Zurück zum Zitat Strauß A, Wöstmann M, Obleser J (2014) Cortical alpha oscillations as a tool for auditory selective inhibition. J Front Hum Neurosci 8:350 Strauß A, Wöstmann M, Obleser J (2014) Cortical alpha oscillations as a tool for auditory selective inhibition. J Front Hum Neurosci 8:350
Zurück zum Zitat Surbeck W, Bouthillier A, Weil AG, Crevier L, Carmant L, Lortie A, Major P, Nguyen DK (2011) The combination of subdural and depth electrodes for intracranial EEG investigation of suspected insular (perisylvian) epilepsy. Epilepsia 52:458–466PubMedCrossRef Surbeck W, Bouthillier A, Weil AG, Crevier L, Carmant L, Lortie A, Major P, Nguyen DK (2011) The combination of subdural and depth electrodes for intracranial EEG investigation of suspected insular (perisylvian) epilepsy. Epilepsia 52:458–466PubMedCrossRef
Zurück zum Zitat Terasawa Y, Kurosaki Y, Ibata Y, Moriguchi Y, Umeda S (2015) Attenuated sensitivity to the emotions of others by insular lesion. Front Psychol 6:1314PubMedPubMedCentralCrossRef Terasawa Y, Kurosaki Y, Ibata Y, Moriguchi Y, Umeda S (2015) Attenuated sensitivity to the emotions of others by insular lesion. Front Psychol 6:1314PubMedPubMedCentralCrossRef
Zurück zum Zitat Tiitinen H, Sivonen P, Alku P, Virtanen J, Näätänen R (1999) Electromagnetic recordings reveal latency differences in speech and tone processing in humans. Brain Res Cogn Brain Res 8:355–363PubMedCrossRef Tiitinen H, Sivonen P, Alku P, Virtanen J, Näätänen R (1999) Electromagnetic recordings reveal latency differences in speech and tone processing in humans. Brain Res Cogn Brain Res 8:355–363PubMedCrossRef
Zurück zum Zitat Tomasino B, Marin D, Canderan C, Maieron M, Skrap M, Rumiati R (2014) Neuropsychological patterns following lesions of the anterior insula in a series of forty neurosurgical patients. AIMS Neurosci 1(3):225–244CrossRef Tomasino B, Marin D, Canderan C, Maieron M, Skrap M, Rumiati R (2014) Neuropsychological patterns following lesions of the anterior insula in a series of forty neurosurgical patients. AIMS Neurosci 1(3):225–244CrossRef
Zurück zum Zitat Ture U, Yasargil DC, Al-Mefty O, Yasargil MG (1999) Topographic anatomy of the insular region. J Neurosurg 90:720–733PubMedCrossRef Ture U, Yasargil DC, Al-Mefty O, Yasargil MG (1999) Topographic anatomy of the insular region. J Neurosurg 90:720–733PubMedCrossRef
Zurück zum Zitat Uddin LQ (2015) Salience processing and insular cortical function and dysfunction. Nat Rev Neurosci 16:55–61PubMedCrossRef Uddin LQ (2015) Salience processing and insular cortical function and dysfunction. Nat Rev Neurosci 16:55–61PubMedCrossRef
Zurück zum Zitat Velasco M, Velasco F, Velasco AL, Almanza X, Olvera A (1986) Subcortical correlates of the P300 potential complex in man to auditory stimuli. J Electroencephalogr Clin Neurophysiol 64:199–210CrossRef Velasco M, Velasco F, Velasco AL, Almanza X, Olvera A (1986) Subcortical correlates of the P300 potential complex in man to auditory stimuli. J Electroencephalogr Clin Neurophysiol 64:199–210CrossRef
Zurück zum Zitat Volpe U, Mucci A, Bucci P, Merlotti E, Galderisi S, Maj M (2007) The cortical generators of P3a and P3b: a LORETA study. Brain Res Bull 73:220–230PubMedCrossRef Volpe U, Mucci A, Bucci P, Merlotti E, Galderisi S, Maj M (2007) The cortical generators of P3a and P3b: a LORETA study. Brain Res Bull 73:220–230PubMedCrossRef
Zurück zum Zitat Womelsdorf T, Fries P (2007) The role of neuronal synchronization in selective attention. Curr Opin Neurobiol 17:154–160PubMedCrossRef Womelsdorf T, Fries P (2007) The role of neuronal synchronization in selective attention. Curr Opin Neurobiol 17:154–160PubMedCrossRef
Zurück zum Zitat Woods DL (1995) The component structure of the N1 wave of the human auditory evoked potential. Electroencephalogr Clin Neurophysiol Suppl 44:102–109PubMed Woods DL (1995) The component structure of the N1 wave of the human auditory evoked potential. Electroencephalogr Clin Neurophysiol Suppl 44:102–109PubMed
Zurück zum Zitat Yordanova J, Kolev V (1998) Single-sweep analysis of the theta frequency band during an auditory oddball task. Psychophysiology 35:116–126PubMedCrossRef Yordanova J, Kolev V (1998) Single-sweep analysis of the theta frequency band during an auditory oddball task. Psychophysiology 35:116–126PubMedCrossRef
Metadaten
Titel
Spatiotemporal dynamics of auditory information processing in the insular cortex: an intracranial EEG study using an oddball paradigm
verfasst von
Daphné Citherlet
Olivier Boucher
Julie Tremblay
Manon Robert
Anne Gallagher
Alain Bouthillier
Franco Lepore
Dang Khoa Nguyen
Publikationsdatum
28.04.2020
Verlag
Springer Berlin Heidelberg
Erschienen in
Brain Structure and Function / Ausgabe 5/2020
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-020-02072-z

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