Abdelgabar AR, Suttrup J, Broersen R, Bhandari R, Picard S, Keysers C, De Zeeuw CI, Gazzola V
(2019) Action perception recruits the cerebellum and is impaired in patients with spinocerebellar ataxia. Brain142:3791–3805. doi:10.1093/brain/awz337 pmid:31747689
Cross Ref PubMed Google Scholar
Aglioti SM, Pazzaglia M
(2010) Representing actions through their sound. Exp Brain Res 206:141–151.doi:10.1007/s00221-010-2344-x
Cross Ref PubMed Google Scholar
Bastiaansen JA, Thioux M, Keysers C
(2009) Evidence for mirror systems in emotions. Philos Trans R Soc Lond B Biol Sci 364:2391–2404. doi:10.1098/rstb.2009.0058 pmid:19620110
Cross Ref PubMed Google Scholar
Behzadi Y, Restom K, Liau J, Liu TT
(2007) A component based noise correction method (CompCor) for BOLD and perfusion based fMRI. Neuroimage 37:90–101. doi:10.1016/j.neuroimage.2007.04.042
Cross Ref PubMed Google Scholar
Bell BM, Spruijt-Metz D, Vega Yon GG, Mondol AS, Alam R, Ma M, Emi I, Lach J, Stankovic JA, De la HayeK
(2019) Sensing eating mimicry among family members. Transl Behav Med 9:422–430.doi:10.1093/tbm/ibz051
Blakemore SJ, Wolpert D, Frith C
(2000) Why can’t you tickle yourself? Neuroreport 11:R11–R16.
Cross Ref PubMed Google Scholar
Buccino G, Binkofski F, Fink GR, Fadiga L, Fogassi L, Gallese V, Seitz RJ, Zilles K, Rizzolatti G, Freund HJ
(2001) Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study. Eur J Neurosci 13:400–404. doi:10.1111/j.1460-9568.2001.01385.x
Cross Ref PubMed Google Scholar
Campbell ME, Mehrkanoon S, Cunnington R
(2018) Intentionally not imitating: insula cortex engaged for top-down control of action mirroring. Neuropsychologia 111:241–251.doi:10.1016/j.neuropsychologia.2018.01.037 pmid:29408525
Cross Ref PubMed Google Scholar
Catmur C, Walsh V, Heyes C
(2007) Sensorimotor learning configures the human mirror system. Curr Biol17:1527–1531. doi:10.1016/j.cub.2007.08.006 pmid:17716898
Cross Ref PubMed Google Scholar
Cavanna AE, Seri S
(2015) Misophonia: current perspectives. Neuropsychiatr Dis Treat 11:2117–2123.doi:10.2147/NDT.S81438 pmid:26316758
Cross Ref PubMed Google Scholar
Chartrand TL, Bargh JA
(1999) The chameleon effect: the perception-behavior link and social interaction. J Pers Soc Psychol 76:893–910. doi:10.1037//0022-3514.76.6.893 pmid:10402679
Cross Ref PubMed Google Scholar
Craig AD
(2007) Interoception and emotion: a neuroanatomical perspective. In: Lewis M, Haviland-Jones JM, Barett LF, editors. Handbook of Emotions. Guilford Press; 2007. pp. 272–290.
Craig AD
(2009) How do you feel—now? The anterior insula and human awareness. Nat. Rev. Neurosci. 2009;10:59–70.
Daniels EC, Rodriguez A, Zabelina DL
(2020) Severity of misophonia symptoms is associated with worse cognitive control when exposed to misophonia trigger sounds. PLoS One 15:e0227118.doi:10.1371/journal.pone.0227118 pmid:31945068
Cross Ref PubMed Google Scholar
Dozier T
(2015) Understanding and overcoming misophonia: a conditioned aversive reflex disorder. Livermore, CA: Misophonia Treatment Institute.
Edelstein M, Brang D, Rouw R, Ramachandran VS
(2013) Misophonia: physiological investigations and case descriptions. Front Hum Neurosci 7:296. doi:10.3389/fnhum.2013.00296 pmid:23805089
Cross Ref PubMed Google Scholar
Ehrsson HH, Geyer S, Naito E
(2003) Imagery of voluntary movement of fingers, toes, and tongue activates corresponding body-part–specific motor representations. J Neurophysiol 90:3304–3316.doi:10.1152/jn.01113.2002 pmid:14615433
Cross Ref PubMed Google Scholar
Eickhoff SB, Stephan KE, Mohlberg H, Grefkes C, Fink GR, Amunts K, Zilles K
(2005) A new SPM toolbox for combining probabilistic cytoarchitectonic maps and functional imaging data. Neuroimage 25:1325–1335. doi:10.1016/j.neuroimage.2004.12.034 pmid:15850749
Cross Ref PubMed Google Scholar
Erfanian M, Kartsonaki C, Keshavarz A
(2019) Misophonia and comorbid psychiatric symptoms: a preliminary study of clinical findings. Nord J Psychiatry 73:219–228. doi:10.1080/08039488.2019.1609086pmid:31066600
Cross Ref PubMed Google Scholar
Ferrari PF, Gallese V, Rizzolatti G, Fogassi L
(2003) Mirror neurons responding to the observation of ingestive and communicative mouth actions in the monkey ventral premotor cortex. Eur J Neurosci17:1703–1714. doi:10.1046/j.1460-9568.2003.02601.x pmid:12752388
Cross Ref PubMed Google Scholar
Ferrari PF, Maiolini C, Addessi E, Fogassi L, Visalberghi E
(2005) The observation and hearing of eating actions activates motor programs related to eating in macaque monkeys. Behav Brain Res 161:95–101.doi:10.1016/j.bbr.2005.01.009 pmid:15904715
Cross Ref PubMed Google Scholar
Ferreira GM, Harrison BJ, Fontenelle LF
(2013) Hatred of sounds: misophonic disorder or just an underreported psychiatric symptom? Ann. Clin. Psychiatry. 2013;25:271–274.
Friston KJ, Holmes AP, Worsley KJ, Poline JP, Frith CD, Frackowiak RSJ.
(1994) Statistical parametric maps in functional imaging: a general linear approach. Hum. Brain Mapp. 1994;2:189–210.
Garfinkel SN, Critchley HD.
(2013) Interoception, emotion and brain: new insights link internal physiology to social behaviour. Commentary on: “Anterior insular cortex mediates bodily sensibility and social anxiety” by Terasawa et al. (2012) Soc. Cogn. Affect. Neurosci. 2013;8:231–234.
PMC free article PubMed Google Scholar
Garfinkel SN, Tiley C, O’Keeffe S, Harrison NA, Seth AK, Critchley HD.
(2016) Discrepancies between dimensions of interoception in autism: implications for emotion and anxiety. Biol. Psychol. 2016;114:117–126.
Grabski K, Lamalle L, Vilain C, Schwartz JL, Vallee N, Tropres I, Baciu M, Le Bas JF, Sato M
(2012) Functional MRI assessment of orofacial articulators: neural correlates of lip, jaw, larynx, and tongue movements. Hum Brain Mapp 33:2306–2321. doi:10.1002/hbm.21363 pmid:21826760
Cross Ref PubMed Google Scholar
Greicius MD, Supekar K, Menon V, Dougherty RF
(2009) Resting-state functional connectivity reflects structural connectivity in the default mode network. Cereb Cortex 19:72–78. doi:10.1093/cercor/bhn059pmid:18403396
Cross Ref PubMed Google Scholar
Hadjipavlou G, Baer S, Lau A, Howard A
(2008) Selective sound intolerance and emotional distress: what every clinician should hear. Psychosom. Med. 2008;70:739–740
PubMed Google Scholar
Hermans RC, Lichtwarck-Aschoff A, Bevelander KE, Herman CP, Larsen JK, Engels RC
(2012) Mimicry of food intake: the dynamic interplay between eating companions. PLoS One 7:e31027.doi:10.1371/journal.pone.0031027 pmid:22312438
Cross Ref PubMed Google Scholar
Heyes C
(2011) Automatic imitation. Psychol Bull 137:463–483. doi:10.1037/a0022288 pmid:21280938
Cross Ref PubMed Google Scholar
Honey CJ, Sporns O, Cammoun L, Gigandet X, Thiran JP, Meuli R, Hagmann P
(2009) Predicting human resting-state functional connectivity from structural connectivity. Proc Natl Acad Sci USA 106:2035–2040.doi:10.1073/pnas.0811168106
Abstract/FREE Full Text Google Scholar
Hufendiek R
(2016) Embodied emotions: a naturalist approach to a normative phenomenon. Milton Park, UK: Taylor and Francis.
Huijbers W., Pennartz C.M., Cabeza R., Daselaar S.M.
(2011) The hippocampus is coupled with the default network during memory retrieval but not during memory encoding. PLoS ONE. 2011;6:e17463.
PMC free article PubMed Google Scholar
Hutton C, Josephs O, Stadler J, Featherstone E, Reid A, Speck O, Bernarding J, Weiskopf N
(2011) The impact of physiological noise correction on fMRI at 7 T. Neuroimage 57:101–112.doi:10.1016/j.neuroimage.2011.04.018 pmid:21515386
Cross Ref PubMed Google Scholar
Iacoboni M, Dapretto M
(2006) The mirror neuron system and the consequences of its dysfunction. Nat Rev Neurosci 7:942–951. doi:10.1038/nrn2024 pmid:17115076
Cross Ref PubMed Google Scholar
Iacoboni M, Woods RP, Brass M, Bekkering H, Mazziotta JC, Rizzolatti G
(1999) Cortical mechanisms of human imitation. Science 286:2526–2528. doi:10.1126/science.286.5449.2526
Abstract/FREE Full Text Google Scholar
Jastreboff MM, Jastreboff PJ
(2001) Components of decreased sound tolerance: hyperacusis, misophonia, phonophobia. ITHS News Lett. 2001;2:5–7.
Jager I, de Koning P, Bost T, Denys D, Vulink N
(2020) Misophonia: phenomenology, comorbidity and demographics in a large sample. PLoS One 15:e0231390. doi:10.1371/journal.pone.0231390
Kern M, Bert S, Glanz O, Schulze-Bonhage A, Ball T
(2019) Human motor cortex relies on sparse and action-specific activation during laughing, smiling and speech production. Commun Biol 2:118.doi:10.1038/s42003-019-0360-3 pmid:30937400
Cross Ref PubMed Google Scholar
Kohler E, Keysers C, Umilta MA, Fogassi L, Gallese V, Rizzolatti G
(2002) Hearing sounds, understanding actions: action representation in mirror neurons. Science 297:846–848. doi:10.1126/science.1070311pmid:12161656
Abstract/FREE Full TextGoogle Scholar
Krauthamer JT
(2013) Sound-Rage: A Primer of the Neurobiology and Psychology of a Little Known Anger Disorder. Chalcedony Press; 2013.
Google Scholar
Kumar S, Hancock O, Cope T, Sedley W, Winston J, Griffiths T
(2014) Misophonia: a disorder of emotion processing of sounds. J Neurol Neurosurg Psychiatry 85:15.
Kumar S, Tansley-Hancock O, Sedley W, Winston JS, Callaghan MF, Allen M, Cope TE, Gander PE, Bamiou DE, Griffiths TD
(2017) The brain basis for misophonia. Curr Biol 27:527–533.doi:10.1016/j.cub.2016.12.048 pmid:28162895
Cross Ref PubMed Google Scholar
Lutti A, Hutton C, Finsterbusch J, Helms G, Weiskopf N
(2010) Optimization and validation of methods for mapping of the radiofrequency transmit field at 3T. Magn Reson Med 64:229–238. doi:10.1002/mrm.22421pmid:20572153
Cross Ref PubMed Google Scholar
Lutti A, Stadler J, Josephs O, Windischberger C, Speck O, Bernarding J, Hutton C, Weiskopf N
(2012) Robust and fast whole brain mapping of the RF transmit field B1 at 7T. PLoS One 7:e32379.doi:10.1371/journal.pone.0032379 pmid:22427831
Cross Ref PubMed Google Scholar
Mayka MA, Corcos DM, Leurgans SE, Vaillancourt DE
(2006) Three-dimensional locations and boundaries of motor and premotor cortices as defined by functional brain imaging: a meta-analysis. Neuroimage31:1453–1474. doi:10.1016/j.neuroimage.2006.02.004 pmid:16571375
Cross Ref PubMed Google Scholar
Miller LC, Murphy R, Buss AH.
(1981) Consciousness of body: private and public. J. Pers. Soc. Psychol. 1981;41:397–406.
Google Scholar
Mukamel R, Ekstrom AD, Kaplan J, Iacoboni M, Fried I
(2010) Single-neuron responses in humans during execution and observation of actions. Curr Biol 20:750–756. doi:10.1016/j.cub.2010.02.045pmid:20381353
Cross Ref PubMed Google Scholar
Muller D, Khemlani-Patel S, Neziroglu F
(2018) Cognitive-behavioral therapy for an adolescent female presenting with misophonia: a case example. Clin Case Stud 17:249–258.doi:10.1177/1534650118782650
Nauman Z
(2017) HEARING RED: Woman took her own life after ‘suffering from rare condition called sound rage’ which triggers anger attacks over noise of eating and breathing. London: The Sun.
Naylor J, Caimino C, Scutt P, Hoare DJ, Baguley DM
(2021) The prevalence and severity of misophonia in a UK undergraduate medical student population and validation of the Amsterdam Misophonia Scale. Psychiatr Q 92:609–619. doi:10.1007/s11126-020-09825-3
Parker Jones O, Voets NL, Adcock JE, Stacey R, Jbabdi S
(2017) Resting connectivity predicts task activation in pre-surgical populations. Neuroimage Clin 13:378–385. doi:10.1016/j.nicl.2016.12.028pmid:28123949
Cross Ref PubMed Google Scholar
Paulus M.P., Stein M.B.
(2010) Interoception in anxiety and depression. Brain Struct. Funct. 2010;214:451–463.
PMC free article PubMed Google Scholar
Pellegrino G, Fadiga L, Fogassi L, Gallese V, Rizzolatti G
(1992) Understanding motor events: a neurophysiological study. Exp Brain Res 91:176–180. doi:10.1007/BF00230027 pmid:1301372
Cross Ref PubMed Google Scholar
Prochazkova E, Kret ME
(2017) Connecting minds and sharing emotions through mimicry: a neurocognitive model of emotional contagion. Neurosci Biobehav Rev 80:99–114.doi:10.1016/j.neubiorev.2017.05.013 pmid:28506927
Cross Ref PubMed Google Scholar
Raichle M.E., MacLeod A.M., Snyder A.Z., Powers W.J., Gusnard D.A., Shulman G.L.
(2001) A default mode of brain function. Proc. Natl. Acad. Sci. USA. 2001;98:676–682.
PMC free article PubMed Google Scholar
Rizzolatti G, Craighero L
(2004) The mirror-neuron system. Annu Rev Neurosci 27:169–192.doi:10.1146/annurev.neuro.27.070203.144230 pmid:15217330
Cross Ref PubMed Google Scholar
Rizzolatti G, Sinigaglia C
(2010) The functional role of the parieto-frontal mirror circuit: interpretations and misinterpretations. Nat Rev Neurosci 11:264–274. doi:10.1038/nrn2805 pmid:20216547
Cross Ref PubMed Google Scholar
Saarimäki H, Gotsopoulos A, Jääskeläinen IP, Lampinen J, Vuilleumier P, Hari R, Sams M, Nummenmaa L.
(2016) Discrete neural signatures of basic emotions. Cereb. Cortex. 2016;26:2563–2573.
PubMed Google Scholar
Samermit P, Saal J, Davidenko N
(2019) Cross-sensory stimuli modulate reactions to aversive sounds. Multisens Res 32:197–213. doi:10.1163/22134808-20191344 pmid:31059490
Cross Ref PubMed Google Scholar
Schroder A, Vulink N, Denys D
(2013) Misophonia: diagnostic criteria for a new psychiatric disorder. PLoS One 8:e54706. doi:10.1371/journal.pone.0054706
Cross Ref PubMed Google Scholar
Schröder A., van Diepen R., Mazaheri A., Petropoulos-Petalas D., Soto de Amesti V., Vulink N., Denys D
(2014) Diminished N1 auditory evoked potentials to oddball stimuli in misophonia patients. Front. Behav. Neurosci. 2014;8:123
PMC free article PubMed Google Scholar
Schroder A, Wingen GV, Eijsker N, San Giorgi R, Vulink NC, Turbyne C, Denys D
(2019) Misophonia is associated with altered brain activity in the auditory cortex and salience network. Sci Rep 9:7542.doi:10.1038/s41598-019-44084-8 pmid:31101901
Cross Ref PubMed Google Scholar
Seeley WW, Menon V, Schatzberg AF, Keller J, Glover GH, Kenna H, Reiss AL, Greicius MD (2007) Dissociable intrinsic connectivity networks for salience processing and executive control. J. Neurosci. 2007;27:2349–2356.
PMC free article PubMed Google Scholar
Seth A.K.
(2013) Interoceptive inference, emotion, and the embodied self. Trends Cogn. Sci. 2013;17:565–573.
Seth AK, Friston KJ.
(2016) Active interoceptive inference and the emotional brain. Philos. Trans. R. Soc. Lond. B Biol. Sci. 2016;371:20160007.
PMC free article PubMed Google Scholar
Smith R, Lane RD.
(2015) The neural basis of one’s own conscious and unconscious emotional states. Neurosci. Biobehav. Rev. 2015;57:1–29.
PubMed Google Scholar
Spisak T, Kincses B, Schlitt F, Zunhammer M, Schmidt-Wilcke T, Kincses ZT, Bingel U
(2020) Pain-free resting-state functional brain connectivity predicts individual pain sensitivity. Nat Commun 11:187.doi:10.1038/s41467-019-13785-z pmid:31924769
Cross Ref PubMed Google Scholar
Swedo S, Baguley DM, Denys D, Dixon LJ, Erfanian M, Fioretti A, Jastreboff PJ, Kumar S, Rosenthal MZ, Rouw R, Schiller D, Simner J, Storch EA, Taylor S, Werff KR, Raver SM
(2021) A consensus definition of misophonia: using a delphi process to reach expert agreement. medRxiv 21254951.
Tavor I, Parker Jones O, Mars RB, Smith SM, Behrens TE, Jbabdi S
(2016) Task-free MRI predicts individual differences in brain activity during task performance. Science 352:216–220.doi:10.1126/science.aad8127 pmid:27124457
Abstract/FREE Full Text Google Scholar
Taylor S
(2017) Misophonia: a new mental disorder? Med Hypotheses 103:109–117.doi:10.1016/j.mehy.2017.05.003 pmid:28571795
Cross Ref PubMed Google Scholar
Van Overwalle F, Baetens K, Marien P, Vandekerckhove M
(2014) Social cognition and the cerebellum: a meta-analysis of over 350 fMRI studies. Neuroimage 86:554–572. doi:10.1016/j.neuroimage.2013.09.033pmid:24076206
Cross Ref PubMed Google Scholar
Wager TD, Waugh CE, Lindquist M, Noll DC, Fredrickson BL, Taylor SF.
(2009) Brain mediators of cardiovascular responses to social threat: part I: reciprocal dorsal and ventral sub-regions of the medial prefrontal cortex and heart-rate reactivity. Neuroimage. 2009;47:821–835.
PMC free article PubMed Google Scholar
Weiskopf N, Hutton C, Josephs O, Deichmann R
(2006) Optimal EPI parameters for reduction of susceptibility-induced BOLD sensitivity losses: a whole-brain analysis at 3 T and 1.5 T. Neuroimage33:493–504. doi:10.1016/j.neuroimage.2006.07.029 pmid:16959495
Cross Ref PubMed Google Scholar
Weiskopf N, Suckling J, Williams G, Correia MM, Inkster B, Tait R, Ooi C, Bullmore ET, Lutti A
(2013) Quantitative multi-parameter mapping of R1, PD(*), MT, and R2(*) at 3T: a multi-center validation. Front Neurosci 7:95. doi:10.3389/fnins.2013.00095
Cross Ref PubMed Google Scholar
Whitfield-Gabrieli S, Nieto-Castanon A
(2012) Conn: a functional connectivity toolbox for correlated and anticorrelated brain networks. Brain Connect 2:125–141. doi:10.1089/brain.2012.0073 pmid:22642651
Cross Ref PubMed Google Scholar
Wiens S.
(2005) Interoception in emotional experience. Curr. Opin. Neurol. 2005;18:442–447.
Wiese AD, Wojcik KD, Storch EA
(2021) Assessment and intervention for individuals with misophonia. J Health Serv Psychol 47:51–60. doi:10.1007/s42843-021-00025-6
Wu MS, Lewin AB, Murphy TK, Storch EA
(2014) Misophonia: incidence, phenomenology, and clinical correlates in an undergraduate student sample. J Clin Psychol 70:994–1007. doi:10.1002/jclp.22098pmid:24752915
Cross Ref PubMed Google Scholar
Zhou X, Wu MS, Storch EA
(2017) Misophonia symptoms among Chinese university students: incidence, associated impairment, and clinical correlates. J Obsessive-Compulsive Relat Disord 14:7–12.doi:10.1016/j.jocrd.2017.05.001
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