Skip to main content
Top
Published in: Brain Structure and Function 3/2014

01-05-2014 | Original Article

Hyperacusis-associated pathological resting-state brain oscillations in the tinnitus brain: a hyperresponsiveness network with paradoxically inactive auditory cortex

Authors: Jae-Jin Song, Dirk De Ridder, Nathan Weisz, Winfried Schlee, Paul Van de Heyning, Sven Vanneste

Published in: Brain Structure and Function | Issue 3/2014

Login to get access

Abstract

Although hyperacusis, a hyperresponsiveness to non-noxious auditory stimuli, is a sound-evoked symptom, possible resting-state pathologic oscillations in hyperacusis brain have never been explored. By comparing 17 tinnitus participants with hyperacusis (T+H+) and 17 without hyperacusis (T+H−), we aimed to explore characteristic resting-state cortical activity of hyperacusis. The T+H+ and T+H− groups, strictly matched for all tinnitus sound characteristics to exclude tinnitus-related cortical changes, were compared using resting-state electroencephalography source-localized activity complemented by functional connectivity analyses. Correlation analysis revealed that hyperacusis questionnaire score was positively correlated with the orbitofrontal cortex (OFC) beta power, the right auditory cortex (AC) alpha1 power, and the dorsal anterior cingulate cortex (dACC) beta1 power. Compared to the T+H− group, the T+H+ group demonstrated increased beta power in the dACC and OFC, and increased alpha power in the right AC. Region of interest analyses including 17 normal controls further confirmed that these differences originated solely from relatively increased power of the T+H+ group, not from a relative power decrease of the T+H− group. Also, the T+H+ group showed increased connectivity between the OFC/dACC and the AC as compared to the T+H− group. The beta power increase in the OFC/dACC may indicate increased resting-state vigilance in tinnitus patients with hyperacusis. In addition, increased alpha power in the AC may reflect an adaptive top-down inhibition against sound stimuli probably mediated by the increased beta power of the OFC. The OFC/dACC, also frequently found to be activated in analogous diseases such as allodynia/hyperalgesia, may compose a hyperresponsiveness network.
Literature
go back to reference Alper KR, John ER, Brodie J, Gunther W, Daruwala R, Prichep LS (2006) Correlation of PET and qEEG in normal subjects. Psychiatry Res 146:271–282PubMed Alper KR, John ER, Brodie J, Gunther W, Daruwala R, Prichep LS (2006) Correlation of PET and qEEG in normal subjects. Psychiatry Res 146:271–282PubMed
go back to reference Anari M, Axelsson A, Eliasson A, Magnusson L (1999) Hypersensitivity to sound-questionnaire data, audiometry and classification. Scand Audiol 28:219–230PubMed Anari M, Axelsson A, Eliasson A, Magnusson L (1999) Hypersensitivity to sound-questionnaire data, audiometry and classification. Scand Audiol 28:219–230PubMed
go back to reference Andersson G, Lindvall N, Hursti T, Carlbring P (2002) Hypersensitivity to sound (hyperacusis): a prevalence study conducted via the Internet and post. Int J Audiol 41:545–554PubMed Andersson G, Lindvall N, Hursti T, Carlbring P (2002) Hypersensitivity to sound (hyperacusis): a prevalence study conducted via the Internet and post. Int J Audiol 41:545–554PubMed
go back to reference Atlas LY, Bolger N, Lindquist MA, Wager TD (2010) Brain mediators of predictive cue effects on perceived pain. J Neurosci 30:12964–12977PubMedCentralPubMed Atlas LY, Bolger N, Lindquist MA, Wager TD (2010) Brain mediators of predictive cue effects on perceived pain. J Neurosci 30:12964–12977PubMedCentralPubMed
go back to reference Boly M, Balteau E, Schnakers C, Degueldre C, Moonen G, Luxen A, Phillips C, Peigneux P, Maquet P, Laureys S (2007) Baseline brain activity fluctuations predict somatosensory perception in humans. Proc Natl Acad Sci USA 104:12187–12192PubMedCentralPubMed Boly M, Balteau E, Schnakers C, Degueldre C, Moonen G, Luxen A, Phillips C, Peigneux P, Maquet P, Laureys S (2007) Baseline brain activity fluctuations predict somatosensory perception in humans. Proc Natl Acad Sci USA 104:12187–12192PubMedCentralPubMed
go back to reference Bruder GE, Bansal R, Tenke CE, Liu J, Hao X, Warner V, Peterson BS, Weissman MM (2012) Relationship of resting EEG with anatomical MRI measures in individuals at high and low risk for depression. Hum Brain Mapp 33:1325–1333PubMedCentralPubMed Bruder GE, Bansal R, Tenke CE, Liu J, Hao X, Warner V, Peterson BS, Weissman MM (2012) Relationship of resting EEG with anatomical MRI measures in individuals at high and low risk for depression. Hum Brain Mapp 33:1325–1333PubMedCentralPubMed
go back to reference Cunnington R, Windischberger C, Moser E (2005) Premovement activity of the pre-supplementary motor area and the readiness for action: studies of time-resolved event-related functional MRI. Hum Mov Sci 24:644–656PubMed Cunnington R, Windischberger C, Moser E (2005) Premovement activity of the pre-supplementary motor area and the readiness for action: studies of time-resolved event-related functional MRI. Hum Mov Sci 24:644–656PubMed
go back to reference Damasio AR (1996) The somatic marker hypothesis and the possible functions of the prefrontal cortex. Philos Trans R Soc Lond B Biol Sci 351:1413–1420PubMed Damasio AR (1996) The somatic marker hypothesis and the possible functions of the prefrontal cortex. Philos Trans R Soc Lond B Biol Sci 351:1413–1420PubMed
go back to reference Dauman R, Bouscau-Faure F (2005) Assessment and amelioration of hyperacusis in tinnitus patients. Acta Otolaryngol 125:503–509PubMed Dauman R, Bouscau-Faure F (2005) Assessment and amelioration of hyperacusis in tinnitus patients. Acta Otolaryngol 125:503–509PubMed
go back to reference Davis SW, Dennis NA, Daselaar SM, Fleck MS, Cabeza R (2008) Que PASA? The posterior-anterior shift in aging. Cereb Cortex 18:1201–1209PubMedCentralPubMed Davis SW, Dennis NA, Daselaar SM, Fleck MS, Cabeza R (2008) Que PASA? The posterior-anterior shift in aging. Cereb Cortex 18:1201–1209PubMedCentralPubMed
go back to reference De Ridder D, Elgoyhen AB, Romo R, Langguth B (2011) Phantom percepts: tinnitus and pain as persisting aversive memory networks. Proc Natl Acad Sci USA 108:8075–8080PubMedCentralPubMed De Ridder D, Elgoyhen AB, Romo R, Langguth B (2011) Phantom percepts: tinnitus and pain as persisting aversive memory networks. Proc Natl Acad Sci USA 108:8075–8080PubMedCentralPubMed
go back to reference Dias R, Robbins TW, Roberts AC (1996) Dissociation in prefrontal cortex of affective and attentional shifts. Nature 380:69–72PubMed Dias R, Robbins TW, Roberts AC (1996) Dissociation in prefrontal cortex of affective and attentional shifts. Nature 380:69–72PubMed
go back to reference Dosenbach NU, Fair DA, Miezin FM, Cohen AL, Wenger KK, Dosenbach RA, Fox MD, Snyder AZ, Vincent JL, Raichle ME, Schlaggar BL, Petersen SE (2007) Distinct brain networks for adaptive and stable task control in humans. Proc Natl Acad Sci USA 104:11073–11078PubMedCentralPubMed Dosenbach NU, Fair DA, Miezin FM, Cohen AL, Wenger KK, Dosenbach RA, Fox MD, Snyder AZ, Vincent JL, Raichle ME, Schlaggar BL, Petersen SE (2007) Distinct brain networks for adaptive and stable task control in humans. Proc Natl Acad Sci USA 104:11073–11078PubMedCentralPubMed
go back to reference Eggermont JJ (2013) Hearing loss, hyperacusis, or tinnitus: What is modeled in animal research? Hear Res 295:140–149PubMed Eggermont JJ (2013) Hearing loss, hyperacusis, or tinnitus: What is modeled in animal research? Hear Res 295:140–149PubMed
go back to reference Farrior JB (1956) Fenestration operation in the poor candidates; 44 cases selected from 637 operations. Laryngoscope 66:566–573PubMed Farrior JB (1956) Fenestration operation in the poor candidates; 44 cases selected from 637 operations. Laryngoscope 66:566–573PubMed
go back to reference Formby C, Sherlock LP, Gold SL (2003) Adaptive plasticity of loudness induced by chronic attenuation and enhancement of the acoustic background. J Acoust Soc Am 114:55–58PubMed Formby C, Sherlock LP, Gold SL (2003) Adaptive plasticity of loudness induced by chronic attenuation and enhancement of the acoustic background. J Acoust Soc Am 114:55–58PubMed
go back to reference Freunberger R, Fellinger R, Sauseng P, Gruber W, Klimesch W (2009) Dissociation between phase-locked and nonphase-locked alpha oscillations in a working memory task. Hum Brain Mapp 30:3417–3425PubMed Freunberger R, Fellinger R, Sauseng P, Gruber W, Klimesch W (2009) Dissociation between phase-locked and nonphase-locked alpha oscillations in a working memory task. Hum Brain Mapp 30:3417–3425PubMed
go back to reference Frey S, Kostopoulos P, Petrides M (2004) Orbitofrontal contribution to auditory encoding. Neuroimage 22:1384–1389PubMed Frey S, Kostopoulos P, Petrides M (2004) Orbitofrontal contribution to auditory encoding. Neuroimage 22:1384–1389PubMed
go back to reference Fu MJ, Daly JJ, Cavusoglu MC (2006) A detection scheme for frontalis and temporalis muscle EMG contamination of EEG data. Conf Proc IEEE Eng Med Biol Soc 1:4514–4518PubMed Fu MJ, Daly JJ, Cavusoglu MC (2006) A detection scheme for frontalis and temporalis muscle EMG contamination of EEG data. Conf Proc IEEE Eng Med Biol Soc 1:4514–4518PubMed
go back to reference Fuchs M, Kastner J, Wagner M, Hawes S, Ebersole JS (2002) A standardized boundary element method volume conductor model. Clin Neurophysiol 113:702–712PubMed Fuchs M, Kastner J, Wagner M, Hawes S, Ebersole JS (2002) A standardized boundary element method volume conductor model. Clin Neurophysiol 113:702–712PubMed
go back to reference Garbarini F, Adenzato M (2004) At the root of embodied cognition: cognitive science meets neurophysiology. Brain Cogn 56:100–106PubMed Garbarini F, Adenzato M (2004) At the root of embodied cognition: cognitive science meets neurophysiology. Brain Cogn 56:100–106PubMed
go back to reference Golm D, Schmidt-Samoa C, Dechent P, Kroner-Herwig B (2013) Neural correlates of tinnitus related distress: an fMRI-study. Hear Res 295:87–99PubMed Golm D, Schmidt-Samoa C, Dechent P, Kroner-Herwig B (2013) Neural correlates of tinnitus related distress: an fMRI-study. Hear Res 295:87–99PubMed
go back to reference Goncharova II, McFarland DJ, Vaughan TM, Wolpaw JR (2003) EMG contamination of EEG: spectral and topographical characteristics. Clin Neurophysiol 114:1580–1593PubMed Goncharova II, McFarland DJ, Vaughan TM, Wolpaw JR (2003) EMG contamination of EEG: spectral and topographical characteristics. Clin Neurophysiol 114:1580–1593PubMed
go back to reference Gothelf D, Farber N, Raveh E, Apter A, Attias J (2006) Hyperacusis in Williams syndrome: characteristics and associated neuroaudiologic abnormalities. Neurology 66:390–395PubMed Gothelf D, Farber N, Raveh E, Apter A, Attias J (2006) Hyperacusis in Williams syndrome: characteristics and associated neuroaudiologic abnormalities. Neurology 66:390–395PubMed
go back to reference Grabenhorst F, Rolls ET, Bilderbeck A (2008) How cognition modulates affective responses to taste and flavor: top-down influences on the orbitofrontal and pregenual cingulate cortices. Cereb Cortex 18:1549–1559PubMed Grabenhorst F, Rolls ET, Bilderbeck A (2008) How cognition modulates affective responses to taste and flavor: top-down influences on the orbitofrontal and pregenual cingulate cortices. Cereb Cortex 18:1549–1559PubMed
go back to reference Gu JW, Halpin CF, Nam EC, Levine RA, Melcher JR (2010) Tinnitus, diminished sound-level tolerance, and elevated auditory activity in humans with clinically normal hearing sensitivity. J Neurophysiol 104:3361–3370PubMedCentralPubMed Gu JW, Halpin CF, Nam EC, Levine RA, Melcher JR (2010) Tinnitus, diminished sound-level tolerance, and elevated auditory activity in humans with clinically normal hearing sensitivity. J Neurophysiol 104:3361–3370PubMedCentralPubMed
go back to reference Hall DA, Haggard MP, Summerfield AQ, Akeroyd MA, Palmer AR, Bowtell RW (2001) Functional magnetic resonance imaging measurements of sound-level encoding in the absence of background scanner noise. J Acoust Soc Am 109:1559–1570PubMed Hall DA, Haggard MP, Summerfield AQ, Akeroyd MA, Palmer AR, Bowtell RW (2001) Functional magnetic resonance imaging measurements of sound-level encoding in the absence of background scanner noise. J Acoust Soc Am 109:1559–1570PubMed
go back to reference Hamm AO, Vaitl D (1996) Affective learning: awareness and aversion. Psychophysiology 33:698–710PubMed Hamm AO, Vaitl D (1996) Affective learning: awareness and aversion. Psychophysiology 33:698–710PubMed
go back to reference Hamm AO, Weike AI (2005) The neuropsychology of fear learning and fear regulation. Int J Psychophysiol 57:5–14PubMed Hamm AO, Weike AI (2005) The neuropsychology of fear learning and fear regulation. Int J Psychophysiol 57:5–14PubMed
go back to reference Herraiz C, Plaza G, Aparicio JM (2006) Mechanisms and management of hyperacusis (decreased sound tolerance). Acta Otorrinolaringol Esp 57:373–377PubMed Herraiz C, Plaza G, Aparicio JM (2006) Mechanisms and management of hyperacusis (decreased sound tolerance). Acta Otorrinolaringol Esp 57:373–377PubMed
go back to reference Hiller W, Goebel G (2006) Factors influencing tinnitus loudness and annoyance. Arch Otolaryngol Head Neck Surg 132:1323–1330PubMed Hiller W, Goebel G (2006) Factors influencing tinnitus loudness and annoyance. Arch Otolaryngol Head Neck Surg 132:1323–1330PubMed
go back to reference Hiller W, Goebel G, Rief W (1994) Reliability of self-rated tinnitus distress and association with psychological symptom patterns. Br J Clin Psychol 33(Pt 2):231–239PubMed Hiller W, Goebel G, Rief W (1994) Reliability of self-rated tinnitus distress and association with psychological symptom patterns. Br J Clin Psychol 33(Pt 2):231–239PubMed
go back to reference Holmes AP, Blair RC, Watson JD, Ford I (1996) Nonparametric analysis of statistic images from functional mapping experiments. J Cereb Blood Flow Metab 16:7–22PubMed Holmes AP, Blair RC, Watson JD, Ford I (1996) Nonparametric analysis of statistic images from functional mapping experiments. J Cereb Blood Flow Metab 16:7–22PubMed
go back to reference Holtz K, Pane-Farre CA, Wendt J, Lotze M, Hamm AO (2012) Brain activation during anticipation of interoceptive threat. Neuroimage 61:857–865PubMed Holtz K, Pane-Farre CA, Wendt J, Lotze M, Hamm AO (2012) Brain activation during anticipation of interoceptive threat. Neuroimage 61:857–865PubMed
go back to reference Hwang JH, Chou PH, Wu CW, Chen JH, Liu TC (2009) Brain activation in patients with idiopathic hyperacusis. Am J Otolaryngol 30:432–434PubMed Hwang JH, Chou PH, Wu CW, Chen JH, Liu TC (2009) Brain activation in patients with idiopathic hyperacusis. Am J Otolaryngol 30:432–434PubMed
go back to reference Jastreboff PJ (1990) Phantom auditory perception (tinnitus): mechanisms of generation and perception. Neurosci Res 8:221–254PubMed Jastreboff PJ (1990) Phantom auditory perception (tinnitus): mechanisms of generation and perception. Neurosci Res 8:221–254PubMed
go back to reference Jones AK, Derbyshire SW (1997) Reduced cortical responses to noxious heat in patients with rheumatoid arthritis. Ann Rheum Dis 56:601–607PubMedCentralPubMed Jones AK, Derbyshire SW (1997) Reduced cortical responses to noxious heat in patients with rheumatoid arthritis. Ann Rheum Dis 56:601–607PubMedCentralPubMed
go back to reference Jurcak V, Tsuzuki D, Dan I (2007) 10/20, 10/10, and 10/5 systems revisited: their validity as relative head-surface-based positioning systems. Neuroimage 34:1600–1611PubMed Jurcak V, Tsuzuki D, Dan I (2007) 10/20, 10/10, and 10/5 systems revisited: their validity as relative head-surface-based positioning systems. Neuroimage 34:1600–1611PubMed
go back to reference Kalisch R, Wiech K, Critchley HD, Seymour B, O’Doherty JP, Oakley DA, Allen P, Dolan RJ (2005) Anxiety reduction through detachment: subjective, physiological, and neural effects. J Cogn Neurosci 17:874–883PubMed Kalisch R, Wiech K, Critchley HD, Seymour B, O’Doherty JP, Oakley DA, Allen P, Dolan RJ (2005) Anxiety reduction through detachment: subjective, physiological, and neural effects. J Cogn Neurosci 17:874–883PubMed
go back to reference Kalisch R, Wiech K, Herrmann K, Dolan RJ (2006) Neural correlates of self-distraction from anxiety and a process model of cognitive emotion regulation. J Cogn Neurosci 18:1266–1276PubMedCentralPubMed Kalisch R, Wiech K, Herrmann K, Dolan RJ (2006) Neural correlates of self-distraction from anxiety and a process model of cognitive emotion regulation. J Cogn Neurosci 18:1266–1276PubMedCentralPubMed
go back to reference Katzenell U, Segal S (2001) Hyperacusis: review and clinical guidelines. Otol Neurotol 22:321–326 (discussion 326–327)PubMed Katzenell U, Segal S (2001) Hyperacusis: review and clinical guidelines. Otol Neurotol 22:321–326 (discussion 326–327)PubMed
go back to reference Keren AS, Yuval-Greenberg S, Deouell LY (2010) Saccadic spike potentials in gamma-band EEG: characterization, detection and suppression. Neuroimage 49:2248–2263PubMed Keren AS, Yuval-Greenberg S, Deouell LY (2010) Saccadic spike potentials in gamma-band EEG: characterization, detection and suppression. Neuroimage 49:2248–2263PubMed
go back to reference Khalfa S, Dubal S, Veuillet E, Perez-Diaz F, Jouvent R, Collet L (2002) Psychometric normalization of a hyperacusis questionnaire. ORL J Otorhinolaryngol Relat Spec 64:436–442PubMed Khalfa S, Dubal S, Veuillet E, Perez-Diaz F, Jouvent R, Collet L (2002) Psychometric normalization of a hyperacusis questionnaire. ORL J Otorhinolaryngol Relat Spec 64:436–442PubMed
go back to reference Klavir O, Genud-Gabai R, Paz R (2012) Low-frequency stimulation depresses the primate anterior-cingulate-cortex and prevents spontaneous recovery of aversive memories. J Neurosci 32:8589–8597PubMed Klavir O, Genud-Gabai R, Paz R (2012) Low-frequency stimulation depresses the primate anterior-cingulate-cortex and prevents spontaneous recovery of aversive memories. J Neurosci 32:8589–8597PubMed
go back to reference Klimesch W (1999) EEG alpha and theta oscillations reflect cognitive and memory performance: a review and analysis. Brain Res Brain Res Rev 29:169–195PubMed Klimesch W (1999) EEG alpha and theta oscillations reflect cognitive and memory performance: a review and analysis. Brain Res Brain Res Rev 29:169–195PubMed
go back to reference Koprivova J, Congedo M, Horacek J, Prasko J, Raszka M, Brunovsky M, Kohutova B, Hoschl C (2011) EEG source analysis in obsessive-compulsive disorder. Clin Neurophysiol 122:1735–1743PubMed Koprivova J, Congedo M, Horacek J, Prasko J, Raszka M, Brunovsky M, Kohutova B, Hoschl C (2011) EEG source analysis in obsessive-compulsive disorder. Clin Neurophysiol 122:1735–1743PubMed
go back to reference Kramer HH, Stenner C, Seddigh S, Bauermann T, Birklein F, Maihofner C (2008) Illusion of pain: pre-existing knowledge determines brain activation of ‘imagined allodynia’. J Pain 9:543–551PubMed Kramer HH, Stenner C, Seddigh S, Bauermann T, Birklein F, Maihofner C (2008) Illusion of pain: pre-existing knowledge determines brain activation of ‘imagined allodynia’. J Pain 9:543–551PubMed
go back to reference Kringelbach ML (2005) The human orbitofrontal cortex: linking reward to hedonic experience. Nat Rev Neurosci 6:691–702PubMed Kringelbach ML (2005) The human orbitofrontal cortex: linking reward to hedonic experience. Nat Rev Neurosci 6:691–702PubMed
go back to reference Lanz S, Seifert F, Maihofner C (2011) Brain activity associated with pain, hyperalgesia and allodynia: an ALE meta-analysis. J Neural Transm 118:1139–1154PubMed Lanz S, Seifert F, Maihofner C (2011) Brain activity associated with pain, hyperalgesia and allodynia: an ALE meta-analysis. J Neural Transm 118:1139–1154PubMed
go back to reference Lehtela L, Salmelin R, Hari R (1997) Evidence for reactive magnetic 10-Hz rhythm in the human auditory cortex. Neurosci Lett 222:111–114PubMed Lehtela L, Salmelin R, Hari R (1997) Evidence for reactive magnetic 10-Hz rhythm in the human auditory cortex. Neurosci Lett 222:111–114PubMed
go back to reference Levitin DJ, Menon V, Schmitt JE, Eliez S, White CD, Glover GH, Kadis J, Korenberg JR, Bellugi U, Reiss AL (2003) Neural correlates of auditory perception in Williams syndrome: an fMRI study. Neuroimage 18:74–82PubMed Levitin DJ, Menon V, Schmitt JE, Eliez S, White CD, Glover GH, Kadis J, Korenberg JR, Bellugi U, Reiss AL (2003) Neural correlates of auditory perception in Williams syndrome: an fMRI study. Neuroimage 18:74–82PubMed
go back to reference Logan JM, Sanders AL, Snyder AZ, Morris JC, Buckner RL (2002) Under-recruitment and nonselective recruitment: dissociable neural mechanisms associated with aging. Neuron 33:827–840PubMed Logan JM, Sanders AL, Snyder AZ, Morris JC, Buckner RL (2002) Under-recruitment and nonselective recruitment: dissociable neural mechanisms associated with aging. Neuron 33:827–840PubMed
go back to reference Mahoney CJ, Rohrer JD, Goll JC, Fox NC, Rossor MN, Warren JD (2011) Structural neuroanatomy of tinnitus and hyperacusis in semantic dementia. J Neurol Neurosurg Psychiatry 82:1274–1278PubMedCentralPubMed Mahoney CJ, Rohrer JD, Goll JC, Fox NC, Rossor MN, Warren JD (2011) Structural neuroanatomy of tinnitus and hyperacusis in semantic dementia. J Neurol Neurosurg Psychiatry 82:1274–1278PubMedCentralPubMed
go back to reference Marriage J, Barnes NM (1995) Is central hyperacusis a symptom of 5-hydroxytryptamine (5-HT) dysfunction? J Laryngol Otol 109:915–921PubMed Marriage J, Barnes NM (1995) Is central hyperacusis a symptom of 5-hydroxytryptamine (5-HT) dysfunction? J Laryngol Otol 109:915–921PubMed
go back to reference McMenamin BW, Shackman AJ, Maxwell JS, Bachhuber DR, Koppenhaver AM, Greischar LL, Davidson RJ (2010) Validation of ICA-based myogenic artifact correction for scalp and source-localized EEG. Neuroimage 49:2416–2432PubMedCentralPubMed McMenamin BW, Shackman AJ, Maxwell JS, Bachhuber DR, Koppenhaver AM, Greischar LL, Davidson RJ (2010) Validation of ICA-based myogenic artifact correction for scalp and source-localized EEG. Neuroimage 49:2416–2432PubMedCentralPubMed
go back to reference Mechias ML, Etkin A, Kalisch R (2010) A meta-analysis of instructed fear studies: implications for conscious appraisal of threat. Neuroimage 49:1760–1768PubMed Mechias ML, Etkin A, Kalisch R (2010) A meta-analysis of instructed fear studies: implications for conscious appraisal of threat. Neuroimage 49:1760–1768PubMed
go back to reference Meeus O, Blaivie C, Van de Heyning P (2007) Validation of the Dutch and the French version of the Tinnitus Questionnaire. B-ENT 3(Suppl 7):11–17PubMed Meeus O, Blaivie C, Van de Heyning P (2007) Validation of the Dutch and the French version of the Tinnitus Questionnaire. B-ENT 3(Suppl 7):11–17PubMed
go back to reference Meeus O, Heyndrickx K, Lambrechts P, De Ridder D, Van de Heyning P (2010a) Phase-shift treatment for tinnitus of cochlear origin. Eur Arch Otorhinolaryngol 267:881–888PubMed Meeus O, Heyndrickx K, Lambrechts P, De Ridder D, Van de Heyning P (2010a) Phase-shift treatment for tinnitus of cochlear origin. Eur Arch Otorhinolaryngol 267:881–888PubMed
go back to reference Meeus OM, Spaepen M, Ridder DD, Heyning PH (2010b) Correlation between hyperacusis measurements in daily ENT practice. Int J Audiol 49:7–13PubMed Meeus OM, Spaepen M, Ridder DD, Heyning PH (2010b) Correlation between hyperacusis measurements in daily ENT practice. Int J Audiol 49:7–13PubMed
go back to reference Mirandola P, Gobbi G, Malinverno C, Carubbi C, Ferne FM, Artico M, Vitale M, Vaccarezza M (2013) Impact of sulphurous water politzer inhalation on audiometric parameters in children with otitis media with effusion. Clin Exp Otorhinolaryngol 6:7–11PubMedCentralPubMed Mirandola P, Gobbi G, Malinverno C, Carubbi C, Ferne FM, Artico M, Vitale M, Vaccarezza M (2013) Impact of sulphurous water politzer inhalation on audiometric parameters in children with otitis media with effusion. Clin Exp Otorhinolaryngol 6:7–11PubMedCentralPubMed
go back to reference Moazami-Goudarzi M, Michels L, Weisz N, Jeanmonod D (2010) Temporo-insular enhancement of EEG low and high frequencies in patients with chronic tinnitus. QEEG study of chronic tinnitus patients. BMC Neurosci 11:40PubMedCentralPubMed Moazami-Goudarzi M, Michels L, Weisz N, Jeanmonod D (2010) Temporo-insular enhancement of EEG low and high frequencies in patients with chronic tinnitus. QEEG study of chronic tinnitus patients. BMC Neurosci 11:40PubMedCentralPubMed
go back to reference Moisset X, Bouhassira D (2007) Brain imaging of neuropathic pain. Neuroimage 37(Suppl 1):S80–S88PubMed Moisset X, Bouhassira D (2007) Brain imaging of neuropathic pain. Neuroimage 37(Suppl 1):S80–S88PubMed
go back to reference Moller AR (2006) Neural plasticity in tinnitus. Prog Brain Res 157:365–372PubMed Moller AR (2006) Neural plasticity in tinnitus. Prog Brain Res 157:365–372PubMed
go back to reference Moller AR (2007b) Tinnitus: presence and future. Prog Brain Res 166:3–16PubMed Moller AR (2007b) Tinnitus: presence and future. Prog Brain Res 166:3–16PubMed
go back to reference Mulert C, Jager L, Schmitt R, Bussfeld P, Pogarell O, Moller HJ, Juckel G, Hegerl U (2004) Integration of fMRI and simultaneous EEG: towards a comprehensive understanding of localization and time-course of brain activity in target detection. Neuroimage 22:83–94PubMed Mulert C, Jager L, Schmitt R, Bussfeld P, Pogarell O, Moller HJ, Juckel G, Hegerl U (2004) Integration of fMRI and simultaneous EEG: towards a comprehensive understanding of localization and time-course of brain activity in target detection. Neuroimage 22:83–94PubMed
go back to reference Nichols TE, Holmes AP (2002) Nonparametric permutation tests for functional neuroimaging: a primer with examples. Hum Brain Mapp 15:1–25PubMed Nichols TE, Holmes AP (2002) Nonparametric permutation tests for functional neuroimaging: a primer with examples. Hum Brain Mapp 15:1–25PubMed
go back to reference Nitschke JB, Sarinopoulos I, Mackiewicz KL, Schaefer HS, Davidson RJ (2006) Functional neuroanatomy of aversion and its anticipation. Neuroimage 29:106–116PubMed Nitschke JB, Sarinopoulos I, Mackiewicz KL, Schaefer HS, Davidson RJ (2006) Functional neuroanatomy of aversion and its anticipation. Neuroimage 29:106–116PubMed
go back to reference Norena AJ, Moffat G, Blanc JL, Pezard L, Cazals Y (2010) Neural changes in the auditory cortex of awake guinea pigs after two tinnitus inducers: salicylate and acoustic trauma. Neuroscience 166:1194–1209PubMed Norena AJ, Moffat G, Blanc JL, Pezard L, Cazals Y (2010) Neural changes in the auditory cortex of awake guinea pigs after two tinnitus inducers: salicylate and acoustic trauma. Neuroscience 166:1194–1209PubMed
go back to reference O’Doherty JP (2004) Reward representations and reward-related learning in the human brain: insights from neuroimaging. Curr Opin Neurobiol 14:769–776PubMed O’Doherty JP (2004) Reward representations and reward-related learning in the human brain: insights from neuroimaging. Curr Opin Neurobiol 14:769–776PubMed
go back to reference Pae JS, Kwon JS, Youn T, Park HJ, Kim MS, Lee B, Park KS (2003) LORETA imaging of P300 in schizophrenia with individual MRI and 128-channel EEG. Neuroimage 20:1552–1560PubMed Pae JS, Kwon JS, Youn T, Park HJ, Kim MS, Lee B, Park KS (2003) LORETA imaging of P300 in schizophrenia with individual MRI and 128-channel EEG. Neuroimage 20:1552–1560PubMed
go back to reference Pascual-Marqui RD (2002) Standardized low-resolution brain electromagnetic tomography (sLORETA): technical details. Methods Find Exp Clin Pharmacol 24(Suppl D):5–12PubMed Pascual-Marqui RD (2002) Standardized low-resolution brain electromagnetic tomography (sLORETA): technical details. Methods Find Exp Clin Pharmacol 24(Suppl D):5–12PubMed
go back to reference Pascual-Marqui RD (2007) Instantaneous and lagged measurements of linear and nonlinear dependence between groups of multivariate time series: frequency decomposition. Arxiv preprint arXiv:07111455 Pascual-Marqui RD (2007) Instantaneous and lagged measurements of linear and nonlinear dependence between groups of multivariate time series: frequency decomposition. Arxiv preprint arXiv:07111455
go back to reference Peyron R, Laurent B, Garcia-Larrea L (2000) Functional imaging of brain responses to pain. A review and meta-analysis (2000). Neurophysiol Clin 30:263–288PubMed Peyron R, Laurent B, Garcia-Larrea L (2000) Functional imaging of brain responses to pain. A review and meta-analysis (2000). Neurophysiol Clin 30:263–288PubMed
go back to reference Pizzagalli DA, Oakes TR, Fox AS, Chung MK, Larson CL, Abercrombie HC, Schaefer SM, Benca RM, Davidson RJ (2004) Functional but not structural subgenual prefrontal cortex abnormalities in melancholia. Mol Psychiatry 9(325):393–405 Pizzagalli DA, Oakes TR, Fox AS, Chung MK, Larson CL, Abercrombie HC, Schaefer SM, Benca RM, Davidson RJ (2004) Functional but not structural subgenual prefrontal cortex abnormalities in melancholia. Mol Psychiatry 9(325):393–405
go back to reference Raz N, Rodrigue KM (2006) Differential aging of the brain: patterns, cognitive correlates and modifiers. Neurosci Biobehav Rev 30:730–748PubMed Raz N, Rodrigue KM (2006) Differential aging of the brain: patterns, cognitive correlates and modifiers. Neurosci Biobehav Rev 30:730–748PubMed
go back to reference Rolls ET (2004) The functions of the orbitofrontal cortex. Brain Cogn 55:11–29PubMed Rolls ET (2004) The functions of the orbitofrontal cortex. Brain Cogn 55:11–29PubMed
go back to reference Rolls ET, Grabenhorst F (2008) The orbitofrontal cortex and beyond: from affect to decision-making. Prog Neurobiol 86:216–244PubMed Rolls ET, Grabenhorst F (2008) The orbitofrontal cortex and beyond: from affect to decision-making. Prog Neurobiol 86:216–244PubMed
go back to reference Rosen SD, Paulesu E, Frith CD, Frackowiak RS, Davies GJ, Jones T, Camici PG (1994) Central nervous pathways mediating angina pectoris. Lancet 344:147–150PubMed Rosen SD, Paulesu E, Frith CD, Frackowiak RS, Davies GJ, Jones T, Camici PG (1994) Central nervous pathways mediating angina pectoris. Lancet 344:147–150PubMed
go back to reference Sadaghiani S, Hesselmann G, Kleinschmidt A (2009) Distributed and antagonistic contributions of ongoing activity fluctuations to auditory stimulus detection. J Neurosci 29:13410–13417PubMed Sadaghiani S, Hesselmann G, Kleinschmidt A (2009) Distributed and antagonistic contributions of ongoing activity fluctuations to auditory stimulus detection. J Neurosci 29:13410–13417PubMed
go back to reference Sauseng P, Klimesch W (2008) What does phase information of oscillatory brain activity tell us about cognitive processes? Neurosci Biobehav Rev 32:1001–1013PubMed Sauseng P, Klimesch W (2008) What does phase information of oscillatory brain activity tell us about cognitive processes? Neurosci Biobehav Rev 32:1001–1013PubMed
go back to reference Scharmuller W, Leutgeb V, Schafer A, Kochel A, Schienle A (2011) Source localization of late electrocortical positivity during symptom provocation in spider phobia: an sLORETA study. Brain Res 1397:10–18PubMedCentralPubMed Scharmuller W, Leutgeb V, Schafer A, Kochel A, Schienle A (2011) Source localization of late electrocortical positivity during symptom provocation in spider phobia: an sLORETA study. Brain Res 1397:10–18PubMedCentralPubMed
go back to reference Schecklmann M, Landgrebe M, Poeppl TB, Kreuzer P, Manner P, Marienhagen J, Wack DS, Kleinjung T, Hajak G, Langguth B (2013) Neural correlates of tinnitus duration and distress: a positron emission tomography study. Hum Brain Mapp 34(1):233–240PubMed Schecklmann M, Landgrebe M, Poeppl TB, Kreuzer P, Manner P, Marienhagen J, Wack DS, Kleinjung T, Hajak G, Langguth B (2013) Neural correlates of tinnitus duration and distress: a positron emission tomography study. Hum Brain Mapp 34(1):233–240PubMed
go back to reference Schlee W, Hartmann T, Langguth B, Weisz N (2009) Abnormal resting-state cortical coupling in chronic tinnitus. BMC Neurosci 10:11PubMedCentralPubMed Schlee W, Hartmann T, Langguth B, Weisz N (2009) Abnormal resting-state cortical coupling in chronic tinnitus. BMC Neurosci 10:11PubMedCentralPubMed
go back to reference Schlee W, Kleinjung T, Hiller W, Goebel G, Kolassa IT, Langguth B (2011) Does tinnitus distress depend on age of onset? PLoS ONE 6:e27379PubMedCentralPubMed Schlee W, Kleinjung T, Hiller W, Goebel G, Kolassa IT, Langguth B (2011) Does tinnitus distress depend on age of onset? PLoS ONE 6:e27379PubMedCentralPubMed
go back to reference Sekihara K, Sahani M, Nagarajan SS (2005) Localization bias and spatial resolution of adaptive and non-adaptive spatial filters for MEG source reconstruction. Neuroimage 25:1056–1067PubMed Sekihara K, Sahani M, Nagarajan SS (2005) Localization bias and spatial resolution of adaptive and non-adaptive spatial filters for MEG source reconstruction. Neuroimage 25:1056–1067PubMed
go back to reference Sherlin L, Congedo M (2005) Obsessive-compulsive dimension localized using low-resolution brain electromagnetic tomography (LORETA). Neurosci Lett 387:72–74PubMed Sherlin L, Congedo M (2005) Obsessive-compulsive dimension localized using low-resolution brain electromagnetic tomography (LORETA). Neurosci Lett 387:72–74PubMed
go back to reference Siepmann M, Kirch W (2002) Effects of caffeine on topographic quantitative EEG. Neuropsychobiology 45:161–166PubMed Siepmann M, Kirch W (2002) Effects of caffeine on topographic quantitative EEG. Neuropsychobiology 45:161–166PubMed
go back to reference Song JJ, Choi HG, Oh SH, Chang SO, Kim CS, Lee JH (2009) Unilateral sensorineural hearing loss in children: the importance of temporal bone computed tomography and audiometric follow-up. Otol Neurotol 30:604–608PubMed Song JJ, Choi HG, Oh SH, Chang SO, Kim CS, Lee JH (2009) Unilateral sensorineural hearing loss in children: the importance of temporal bone computed tomography and audiometric follow-up. Otol Neurotol 30:604–608PubMed
go back to reference Song JJ, De Ridder D, Van de Heyning P, Vanneste S (2012a) Mapping tinnitus-related brain activation: an activation-likelihood estimation metaanalysis of PET studies. J Nucl Med 53:1550–1557PubMed Song JJ, De Ridder D, Van de Heyning P, Vanneste S (2012a) Mapping tinnitus-related brain activation: an activation-likelihood estimation metaanalysis of PET studies. J Nucl Med 53:1550–1557PubMed
go back to reference Song JJ, Hong SK, Kim JS, Koo JW (2012b) Enlarged vestibular aqueduct may precipitate benign paroxysmal positional vertigo in children. Acta Otolaryngol 132(Suppl 1):S109–S117PubMed Song JJ, Hong SK, Kim JS, Koo JW (2012b) Enlarged vestibular aqueduct may precipitate benign paroxysmal positional vertigo in children. Acta Otolaryngol 132(Suppl 1):S109–S117PubMed
go back to reference Song JJ, De Ridder D, Schlee W, Van de Heyning P, Vanneste S (2013a) “Distressed aging”: the differences in brain activity between early- and late-onset tinnitus. Neurobiol Aging 34:1853–1863PubMed Song JJ, De Ridder D, Schlee W, Van de Heyning P, Vanneste S (2013a) “Distressed aging”: the differences in brain activity between early- and late-onset tinnitus. Neurobiol Aging 34:1853–1863PubMed
go back to reference Song JJ, Punte AK, De Ridder D, Vanneste S, Van de Heyning P (2013b) Neural substrates predicting improvement of tinnitus after cochlear implantation in patients with single-sided deafness. Hear Res 299C:1–9 Song JJ, Punte AK, De Ridder D, Vanneste S, Van de Heyning P (2013b) Neural substrates predicting improvement of tinnitus after cochlear implantation in patients with single-sided deafness. Hear Res 299C:1–9
go back to reference Sun W, Zhang L, Lu J, Yang G, Laundrie E, Salvi R (2008) Noise exposure-induced enhancement of auditory cortex response and changes in gene expression. Neuroscience 156:374–380PubMedCentralPubMed Sun W, Zhang L, Lu J, Yang G, Laundrie E, Salvi R (2008) Noise exposure-induced enhancement of auditory cortex response and changes in gene expression. Neuroscience 156:374–380PubMedCentralPubMed
go back to reference Sun W, Lu J, Stolzberg D, Gray L, Deng A, Lobarinas E, Salvi RJ (2009) Salicylate increases the gain of the central auditory system. Neuroscience 159:325–334PubMedCentralPubMed Sun W, Lu J, Stolzberg D, Gray L, Deng A, Lobarinas E, Salvi RJ (2009) Salicylate increases the gain of the central auditory system. Neuroscience 159:325–334PubMedCentralPubMed
go back to reference Sun W, Deng A, Jayaram A, Gibson B (2012) Noise exposure enhances auditory cortex responses related to hyperacusis behavior. Brain Res 1485:108–116PubMed Sun W, Deng A, Jayaram A, Gibson B (2012) Noise exposure enhances auditory cortex responses related to hyperacusis behavior. Brain Res 1485:108–116PubMed
go back to reference Turner JG, Parrish J (2008) Gap detection methods for assessing salicylate-induced tinnitus and hyperacusis in rats. Am J Audiol 17:S185–S192PubMed Turner JG, Parrish J (2008) Gap detection methods for assessing salicylate-induced tinnitus and hyperacusis in rats. Am J Audiol 17:S185–S192PubMed
go back to reference Vanneste S, Plazier M, der Loo E, de Heyning PV, Congedo M, De Ridder D (2010a) The neural correlates of tinnitus-related distress. Neuroimage 52:470–480PubMed Vanneste S, Plazier M, der Loo E, de Heyning PV, Congedo M, De Ridder D (2010a) The neural correlates of tinnitus-related distress. Neuroimage 52:470–480PubMed
go back to reference Vanneste S, Plazier M, van der Loo E, Van de Heyning P, De Ridder D (2010b) The differences in brain activity between narrow band noise and pure tone tinnitus. PLoS ONE 5:e13618PubMedCentralPubMed Vanneste S, Plazier M, van der Loo E, Van de Heyning P, De Ridder D (2010b) The differences in brain activity between narrow band noise and pure tone tinnitus. PLoS ONE 5:e13618PubMedCentralPubMed
go back to reference Vanneste S, Plazier M, van der Loo E, Van de Heyning P, De Ridder D (2011a) The difference between uni- and bilateral auditory phantom percept. Clin Neurophysiol 122:578–587PubMed Vanneste S, Plazier M, van der Loo E, Van de Heyning P, De Ridder D (2011a) The difference between uni- and bilateral auditory phantom percept. Clin Neurophysiol 122:578–587PubMed
go back to reference Vanneste S, van de Heyning P, De Ridder D (2011b) The neural network of phantom sound changes over time: a comparison between recent-onset and chronic tinnitus patients. Eur J Neurosci 34:718–731PubMed Vanneste S, van de Heyning P, De Ridder D (2011b) The neural network of phantom sound changes over time: a comparison between recent-onset and chronic tinnitus patients. Eur J Neurosci 34:718–731PubMed
go back to reference Vanneste S, Joos K, De Ridder D (2012) Prefrontal cortex based sex differences in tinnitus perception: same tinnitus intensity, same tinnitus distress, different mood. PLoS ONE 7:e31182PubMedCentralPubMed Vanneste S, Joos K, De Ridder D (2012) Prefrontal cortex based sex differences in tinnitus perception: same tinnitus intensity, same tinnitus distress, different mood. PLoS ONE 7:e31182PubMedCentralPubMed
go back to reference Varela F, Lachaux JP, Rodriguez E, Martinerie J (2001) The brainweb: phase synchronization and large-scale integration. Nat Rev Neurosci 2:229–239PubMed Varela F, Lachaux JP, Rodriguez E, Martinerie J (2001) The brainweb: phase synchronization and large-scale integration. Nat Rev Neurosci 2:229–239PubMed
go back to reference Vernon JA (1987) Pathophysiology of tinnitus: a special case–hyperacusis and a proposed treatment. Am J Otol 8:201–202PubMed Vernon JA (1987) Pathophysiology of tinnitus: a special case–hyperacusis and a proposed treatment. Am J Otol 8:201–202PubMed
go back to reference Vitacco D, Brandeis D, Pascual-Marqui R, Martin E (2002) Correspondence of event-related potential tomography and functional magnetic resonance imaging during language processing. Hum Brain Mapp 17:4–12PubMed Vitacco D, Brandeis D, Pascual-Marqui R, Martin E (2002) Correspondence of event-related potential tomography and functional magnetic resonance imaging during language processing. Hum Brain Mapp 17:4–12PubMed
go back to reference Volkow ND, Logan J, Fowler JS, Wang GJ, Gur RC, Wong C, Felder C, Gatley SJ, Ding YS, Hitzemann R, Pappas N (2000) Association between age-related decline in brain dopamine activity and impairment in frontal and cingulate metabolism. Am J Psychiatry 157:75–80PubMed Volkow ND, Logan J, Fowler JS, Wang GJ, Gur RC, Wong C, Felder C, Gatley SJ, Ding YS, Hitzemann R, Pappas N (2000) Association between age-related decline in brain dopamine activity and impairment in frontal and cingulate metabolism. Am J Psychiatry 157:75–80PubMed
go back to reference 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 73:220–230PubMed 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 73:220–230PubMed
go back to reference Volz KG, von Cramon DY (2009) How the orbitofrontal cortex contributes to decision making—a view from neuroscience. Prog Brain Res 174:61–71PubMed Volz KG, von Cramon DY (2009) How the orbitofrontal cortex contributes to decision making—a view from neuroscience. Prog Brain Res 174:61–71PubMed
go back to reference Wagner M, Fuchs M, Kastner J (2004) Evaluation of sLORETA in the presence of noise and multiple sources. Brain Topogr 16:277–280PubMed Wagner M, Fuchs M, Kastner J (2004) Evaluation of sLORETA in the presence of noise and multiple sources. Brain Topogr 16:277–280PubMed
go back to reference Weisz N, Moratti S, Meinzer M, Dohrmann K, Elbert T (2005) Tinnitus perception and distress is related to abnormal spontaneous brain activity as measured by magnetoencephalography. PLoS Med 2:e153PubMedCentralPubMed Weisz N, Moratti S, Meinzer M, Dohrmann K, Elbert T (2005) Tinnitus perception and distress is related to abnormal spontaneous brain activity as measured by magnetoencephalography. PLoS Med 2:e153PubMedCentralPubMed
go back to reference Weisz N, Muller S, Schlee W, Dohrmann K, Hartmann T, Elbert T (2007) The neural code of auditory phantom perception. J Neurosci 27:1479–1484PubMed Weisz N, Muller S, Schlee W, Dohrmann K, Hartmann T, Elbert T (2007) The neural code of auditory phantom perception. J Neurosci 27:1479–1484PubMed
go back to reference Weisz N, Hartmann T, Muller N, Lorenz I, Obleser J (2011) Alpha rhythms in audition: cognitive and clinical perspectives. Front Psychol 2:73PubMedCentralPubMed Weisz N, Hartmann T, Muller N, Lorenz I, Obleser J (2011) Alpha rhythms in audition: cognitive and clinical perspectives. Front Psychol 2:73PubMedCentralPubMed
go back to reference White DJ, Congedo M, Ciorciari J, Silberstein RB (2012) Brain oscillatory activity during spatial navigation: theta and gamma activity link medial temporal and parietal regions. J Cogn Neurosci 24:686–697PubMed White DJ, Congedo M, Ciorciari J, Silberstein RB (2012) Brain oscillatory activity during spatial navigation: theta and gamma activity link medial temporal and parietal regions. J Cogn Neurosci 24:686–697PubMed
go back to reference Witting N, Kupers RC, Svensson P, Arendt-Nielsen L, Gjedde A, Jensen TS (2001) Experimental brush-evoked allodynia activates posterior parietal cortex. Neurology 57:1817–1824PubMed Witting N, Kupers RC, Svensson P, Arendt-Nielsen L, Gjedde A, Jensen TS (2001) Experimental brush-evoked allodynia activates posterior parietal cortex. Neurology 57:1817–1824PubMed
go back to reference Witting N, Kupers RC, Svensson P, Jensen TS (2006) A PET activation study of brush-evoked allodynia in patients with nerve injury pain. Pain 120:145–154PubMed Witting N, Kupers RC, Svensson P, Jensen TS (2006) A PET activation study of brush-evoked allodynia in patients with nerve injury pain. Pain 120:145–154PubMed
go back to reference Woodhouse A, Drummond PD (1993) Mechanisms of increased sensitivity to noise and light in migraine headache. Cephalalgia 13:417–421PubMed Woodhouse A, Drummond PD (1993) Mechanisms of increased sensitivity to noise and light in migraine headache. Cephalalgia 13:417–421PubMed
go back to reference Worrell GA, Lagerlund TD, Sharbrough FW, Brinkmann BH, Busacker NE, Cicora KM, O’Brien TJ (2000) Localization of the epileptic focus by low-resolution electromagnetic tomography in patients with a lesion demonstrated by MRI. Brain Topogr 12:273–282PubMed Worrell GA, Lagerlund TD, Sharbrough FW, Brinkmann BH, Busacker NE, Cicora KM, O’Brien TJ (2000) Localization of the epileptic focus by low-resolution electromagnetic tomography in patients with a lesion demonstrated by MRI. Brain Topogr 12:273–282PubMed
go back to reference Wright P, Albarracin D, Brown RD, Li H, He G, Liu Y (2008) Dissociated responses in the amygdala and orbitofrontal cortex to bottom-up and top-down components of emotional evaluation. Neuroimage 39:894–902PubMedCentralPubMed Wright P, Albarracin D, Brown RD, Li H, He G, Liu Y (2008) Dissociated responses in the amygdala and orbitofrontal cortex to bottom-up and top-down components of emotional evaluation. Neuroimage 39:894–902PubMedCentralPubMed
go back to reference Zeng FG (2013) An active loudness model suggesting tinnitus as increased central noise and hyperacusis as increased nonlinear gain. Hear Res 295:172–179PubMedCentralPubMed Zeng FG (2013) An active loudness model suggesting tinnitus as increased central noise and hyperacusis as increased nonlinear gain. Hear Res 295:172–179PubMedCentralPubMed
go back to reference Zumsteg D, Wennberg RA, Treyer V, Buck A, Wieser HG (2005) H2(15)O or 13NH3 PET and electromagnetic tomography (LORETA) during partial status epilepticus. Neurology 65:1657–1660PubMed Zumsteg D, Wennberg RA, Treyer V, Buck A, Wieser HG (2005) H2(15)O or 13NH3 PET and electromagnetic tomography (LORETA) during partial status epilepticus. Neurology 65:1657–1660PubMed
go back to reference Zumsteg D, Lozano AM, Wennberg RA (2006a) Depth electrode recorded cerebral responses with deep brain stimulation of the anterior thalamus for epilepsy. Clin Neurophysiol 117:1602–1609PubMed Zumsteg D, Lozano AM, Wennberg RA (2006a) Depth electrode recorded cerebral responses with deep brain stimulation of the anterior thalamus for epilepsy. Clin Neurophysiol 117:1602–1609PubMed
go back to reference Zumsteg D, Lozano AM, Wennberg RA (2006b) Mesial temporal inhibition in a patient with deep brain stimulation of the anterior thalamus for epilepsy. Epilepsia 47:1958–1962PubMed Zumsteg D, Lozano AM, Wennberg RA (2006b) Mesial temporal inhibition in a patient with deep brain stimulation of the anterior thalamus for epilepsy. Epilepsia 47:1958–1962PubMed
go back to reference Zumsteg D, Lozano AM, Wieser HG, Wennberg RA (2006c) Cortical activation with deep brain stimulation of the anterior thalamus for epilepsy. Clin Neurophysiol 117:192–207PubMed Zumsteg D, Lozano AM, Wieser HG, Wennberg RA (2006c) Cortical activation with deep brain stimulation of the anterior thalamus for epilepsy. Clin Neurophysiol 117:192–207PubMed
Metadata
Title
Hyperacusis-associated pathological resting-state brain oscillations in the tinnitus brain: a hyperresponsiveness network with paradoxically inactive auditory cortex
Authors
Jae-Jin Song
Dirk De Ridder
Nathan Weisz
Winfried Schlee
Paul Van de Heyning
Sven Vanneste
Publication date
01-05-2014
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 3/2014
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0555-1

Other articles of this Issue 3/2014

Brain Structure and Function 3/2014 Go to the issue