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Original Article

Cortical Centres Underlying Auditory Temporal Processing in Humans: A PET Study

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Pages 30-37 | Received 16 Dec 1998, Accepted 26 Mar 1999, Published online: 07 Jul 2009

References

  • Hood L J, Berlin C I, Parkins C W. Measurement of sound. Otolaryngol Clin North Am 1991; 24: 233–251
  • Lauter J L, Herscovitch P, Formby C, Raichle M E. Tonotopic organization in human auditory cortex revealed by positron emission tomography. Hear Res 1985; 20: 199–205
  • Mazziotta J C, Phelps M E, Carson R E, Kuhl D E. Tomographic mapping of human cerebral metabolism: auditory stimulation. Neurology 1982; 32: 921–937
  • Millen S J, Haughton V M, Yetkin Z. Functional magnetic resonance imaging of the central auditory pathway following speech and pure-tone stimuli. Laryngoscope 1995; 105: 1305–1310
  • Petersen S E, Fox P T, Posner M I, Mintun M, Raichle M E. Positron Emission Tomographic studies of the processing of single words. J Cogn Neurosci 1989; 1: 153–170
  • Roland P E, Skinhøj E, Lassen N A. Focal activations of human cerebral cortex during auditory discrimination. J Neurophysiol 1981; 45: 1139–1151
  • Tzourio N, Massioui F E, Crivello F, Joliot M, Renault B, Mazoyer B. Functional anatomy of human auditory attention studied with PET. Neuroimage 1997; 5: 63–77
  • Zatorre R-J, Meyer E, Gjedde A, Evans A-C. PET siudies of phonetic processing of speech: review, replication, and reanalysis. Cerebral Cortex 1996; 6: 21–30
  • Evans E F. Auditory processing of complex sounds: an overview. Philos Trans R Soc Lond B Biol Sci 1992; 336: 295–306
  • Evans E F. Cortical representation. Ciba Foundation Symposium on hearing mechanisms in vertebrates, A VS de Reuck, J Knight. J&A Churchill, London 1968; 272–287
  • Ryan A F, Braverman S, Woolf N K, Axelsson G A. Auditory neural activity evoked by puretone stimulation as a function of intensity. Brain Res 1989; 483: 283–293
  • Schreiner C E, Mendclson J R, Sutter M L. Functional topography of cat primary auditory cortex: representation of tone intensity. Exp Brain Res 1992; 92: 105–122
  • Heil P, Rajan R, Irvine D R. Topographic representation of tone intensity along lhe isofrequency axis of cai primary auditory cortex. Hear Res 1994; 76: 188–202
  • Phillips D P. Central auditory processing: a view from auditory ncuroscicncc. Am J Otol 1995; 16: 338–352
  • Sanders J W, Honig E A. Brief lone audiometry. Results in normal and impaired ears. Arch Otolaryngol 1967; 85: 84–91
  • Olsen W O, Rose D E, Noffsinger D. Brief-tone audiometry with normal, cochlear, and eighth nerve tumor patients. Arch Otolaryngol 1974; 99: 185–189
  • Pedersen C B, Elberling C. Temporal integration of acoustic energy in normal hearing persons. Acta Otolaryngol 1972; 76: 402–409
  • Pedersen C B, Salomon G. Temporal integration of acoustic energy. Acta Otolaryngol (Stockh) 1977; 83: 417–423
  • Baru A V. Absolute thresholds and frequency difference limens as a function of sound duration in dogs deprived of the auditory cortex. Sensory processes at the neuronal and behavioral level, G V Gersuni. Academic Press, New York 1971; 265–285
  • Gersuni G V, Baru A V, Karaseva T A, Tonkonogii I M. Effects of temporal lobe lesions on perception of sounds of short duration. Sensory processes at the neuronal and behavioral level, G V Gersuni. Academic Press, New York 1971; 287–300
  • Rosen S. Temporal information in speech: acoustic, auditory and linguistic aspects. Philos Trans R Soc Lond B Biol Sci 1992; 336: 367–373
  • Denes P B, Pinson E N. The speech chain. WH Freeman and Company, The physics and biology of spoken language New York 1993
  • Pedersen C B, Ginzel A, Spliid P E, Andersen E, Madsen S, Kofoed-Nielsen B. Temporal faciors in speech perception. Proceedings of the 14th Danavox Symposium: presbyacusis and other age related aspects, J H Jensen. Stougaard Jensen, Copenhagen 1990; 151–165
  • Scharlock D P, Neff W D, Strominger N L. Discrimination of tone duration after bilateral ablation of cortical auditory areas. J Neurophysiol 1965; 28: 673–681
  • Sherwin I, Efron R. Temporal ordering deficits following anterior temporal lobectomy. Brain Lang 1980; 11: 195–203
  • Efron R, Crandall P H. Central auditory processing. II. Effects of anterior temporal lobectomy. Brain Lang 1983; 19: 237–253
  • Wyler A R, Ray M W. Aphasia for Morse code. Brain Lang 1986; 27: 195–198
  • Harrington D L, Haaland K Y, Knight R T. Cortical networks underlying mechanisms of time perception. J Neurosci 1998; 18: 1085–1095
  • Maquet P, Lejeune H, Pouthas V, Bonnet M, Casini L, Macar F, et al. Brain activation induced by estimation of duration: a PET study. Neuroimage 1996; 3: 119–126
  • Smith T, Tong C, Lammertsma A A, Butler K R, Schnorr L, Watson J D, et al. Dosimetry of intravenously administered oxygen-15 labelled water in man: a model based on experimental human data from 21 subjects. Eur J Nucl Med 1994; 21: 1126–1134
  • Mirz F, Ovesen T, Ishizu K, Johannsen P, Madsen S, Gjedde A, et al. Stimulus-dependent central processing of auditory stimuli: a PET study. Scand Audiol 1999; 27: 1–9
  • Hughes J W. The threshold of audition for short periods of stimulation. Proc Roy Soc Biol 1945; 133: 468–490
  • Creelman C D. Detection discrimination and the loudness of short tones. J Acoust Soc Am 1963; 35: 1201–1206
  • Djupesland G, Zwislocki J J. Effect of temporal summation on the human stapedius reflex. Acta Otolaryngol (Stockh) 1971; 71: 262–265
  • Talairach J, Tournoux P. Co-Planar stereotaxic atlas of the human brain. Co-planar stereotaxic atlas of the human brain: 3-dimensional proportional system: an approach to cerebral imaging. Georg Thieme Verlag, Stuttgart 1988
  • Raichle M E, Martin W RW, Herscovitch P, Mintun M A, Markham J. Brain blood flow measured with intravenous H2(15)O. II. Implementation and validation. J Nucl Med 1983; 24: 790–798
  • Habib M, Demonet J F, Frackowiak R. Neuro-anatomie cognitive du langage: contribution de limagerie fonctionnelle cerebrale. Rev Neurol Paris 1996; 152: 249–260
  • Worsley K J, Evans A C, Marrett S, Neelin P. A three-dimensional statistical analysis for CBF activation studies in human brain. J Cereb Blood Flow Metab 1992; 12: 900–918
  • Ginzel A, Brahe Pedersen C, Spliid P E, Andersen E. The role of temporal factors in auditory perception of consonants and vowels. A study of different age groups. Scand Audiol 1982; 11: 93–100
  • Montnemery P, Almqvist B, Harris S. Recognition of telegraphy disturbed by noise at different S/N-ratios and different telegraphy speeds. A comparison to short-tone audiometry. Scand Audiol 1991; 20: 33–39
  • Masterton R B. Central auditory system. ORL J Otorhinolaryngol Relat Spec 1993; 55: 159–163
  • McEvoy L, Levanen S, Loveless N. Temporal characteristics of auditory sensory memory: neuromag-netic evidence. Psychophysiology 1997; 34: 308–316
  • Prosser S, Peronio M. Discriminazione uditiva tem-porale: effetti di durata degli stimoli, intervalli in-terstimolo, attenzione. Acta Otorhinolaryngol Ital 1997; 17: 87–92
  • Husain M, Shapiro K, Martin J, Kennard C. Abnormal temporal dynamics of visual attention in spatial neglect patients. Nature 1997; 385: 154–156
  • Fletcher P C, Frith C D, Grasby P M, Shallice T, Frackowiak R S, Dolan R J. Brain systems for encoding and retrieval of auditory-verbal memory. An in vivo study in humans. Brain 1995; 118: 401–416
  • Johannsen P, Jakobsen J, Bruhn P, et al. Cortical sites of sustained and divided attention in normal elderly humans. Neuroimage 1997; 6: 145–155
  • Klingberg T, Kawashima R, Roland P E. Activation of multi-modal cortical areas underlies short-term memory. Eur J Neurosci 1996; 8: 1965–1971
  • Pugh K R, Shaywitz B A, Shaywitz S E, et al. Auditory selective attention: an fMRI investigation. Neuroimage 1996; 4: 159–173
  • Mesulam M M. A cortical network for directed attention and unilateral neglect. Ann Neurol 1981; 10: 309–325
  • Pardo J V, Fox P T, Raichle M E. Localization of a human system for sustained attention by positron emission tomography. Nature 1991; 349: 61–64
  • Posner Ml, Petersen S E, Fox P T, Raichle M E. Localization of cognitive operations in the human brain. Science 1988; 240: 1627–1631
  • Ebmeier K P, Steele J D, MacKenzie D M, et al. Cognitive brain potentials and regional cerebral blood flow equivalents during two-and three-sound auditory oddball tasks. Electroencephalogr Clin Neurophysiol 1995; 95: 434–443
  • Andreasen N C, Oleary D S, Cizadlo T, et al. Remembering the past: two facets of episodic memory explored with positron emission tomography. Am J Psychiatry 1995; 152: 1576–1585
  • Grasby P M, Frith C D, Friston K J, Bench C, Frackowiak R S, Dolan R J. Functional mapping of brain areas implicated in auditoryverbal memory function. Brain 1993; 116: 1–20
  • Grasby P M, Frith C D, Friston K J, et al. A graded task approach to the functional mapping of brain areas implicated in auditory-verbal memory. Brain 1994; 117: 1271–1282
  • Shallice T, Fletcher P, Frith C D, Grasby P, Frackowiak R S, Dolan R J. Brain regions associated with acquisition and retrieval of verbal episodic memory. Nature 1994; 368: 633–635
  • Musiek F E, Baran J A, Pinheiro M L. Duration pattern recognition in normal subjects and patients with cerebral and cochlear lesions. Audiology 1990; 29: 304–313
  • Phillips D P, Farmer M E. Acquired word deafness, and the temporal grain of sound representation in the primary auditory cortex. Behav Brain Res 1990; 40: 85–94
  • Robin D A, Tranel D, Damasio H. Auditory perception of temporal and spectral events in patients with focal left and right cerebral lesions. Brain Lang 1990; 39: 539–555
  • Tallal P, Miller S, Fitch R H. Neurobiologies basis of speech: a case for the preeminence of temporal processing. Ann NY Acad Sci 1993; 682: 27–47
  • Efron R, Yund E W, Nichols D, Crandall P H. An ear asymmetry for gap detection following anterior temporal lobectomy. Neuropsychologia 1985; 23: 43–50
  • Kaukoranta E, Sams M, Hari R, Hamalainen M, Naatanen R. Reactions of human auditory cortex to a change in tone duration. Hear Res 1989; 41: 15–21
  • Fitch R H, Brown C P, Oconnor K, Tallal P. Functional lateralization for auditory temporal processing in male and female rats. Behav Neurosci 1993; 107: 844–850
  • Griffiths T D, Büchel C, Frackowiak R SJ, Patterson R D. Analysis of temporal structure in sound by the human brain. Nature Neurosci 1998; 1: 422–427
  • Hinke R M, Hu X, Stillman A E, et al. Functional magnetic resonance imaging of Broca's area during internal speech. Neuroreport 1993; 4: 675–678
  • McGuire P K, Silbersweig D A, Murray R M, David A S, Frackowiak R S, Frith C D. Functional anatomy of inner speech and auditory verbal imagery. Psychol Med 1996; 26: 29–38
  • Andreasen N C, Arndt S, Cizadlo T, et al. Sample size and statistical power in [150]H20 studies of human cognition. J Cereb Blood Flow Metab 1996; 16: 804–816
  • Poeppel D. A critical review of PET studies of phonological processing. Brain Lang 1996; 55: 317–351

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