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Published in: Experimental Brain Research 4/2003

01-12-2003 | Review

CNS somatosensory-auditory interactions elicit or modulate tinnitus

Authors: R. A. Levine, M. Abel, H. Cheng

Published in: Experimental Brain Research | Issue 4/2003

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Abstract

Evidence has accumulated linking clinical tinnitus to the somatosensory system. Most clinical tinnitus patients can change the psychoacoustic attributes of their tinnitus with forceful head and neck contractions. The significance of such somatic modulation of tinnitus was assessed by testing non-clinical subjects. Like clinical tinnitus patients, about 80% of non-clinical subjects who had ongoing tinnitus at the time of testing (whether or not they had been previously aware of it) could modulate their tinnitus with head and neck contractions. Almost 60% of those with no tinnitus at the time of testing could elicit a tinnitus-like auditory percept with head and neck contractions. Because similar results were found in the profoundly deaf, we conclude that somatosensory-auditory interactions within the central nervous system account for most, if not all, somatic modulation of tinnitus as well as the development of auditory percepts with somatic testing. Other observations implicate the muscle spindle as initiating the neural activation that ultimately modulates the central auditory pathway, including the dorsal cochlear nucleus. Somatic influences upon auditory perception are not limited to tinnitus subjects but are a fundamental property of the auditory system.
Literature
go back to reference Aitkin LM, Kenyon CE, Philpott P (1981) The representation of the auditory and somatosensory systems in the external nucleus of the cat inferior colliculus. J Comp Neurol 196:25–40PubMed Aitkin LM, Kenyon CE, Philpott P (1981) The representation of the auditory and somatosensory systems in the external nucleus of the cat inferior colliculus. J Comp Neurol 196:25–40PubMed
go back to reference Bento RF, Sanchez TG, Miniti A, Tedesco-Marchesi AJ (1998) Continuous, high-frequency objective tinnitus caused by middle ear myoclonus. Ear Nose Throat J 77:814–818PubMed Bento RF, Sanchez TG, Miniti A, Tedesco-Marchesi AJ (1998) Continuous, high-frequency objective tinnitus caused by middle ear myoclonus. Ear Nose Throat J 77:814–818PubMed
go back to reference Brown MC, Engberg I, Matthews PB (1967) The relative sensitivity to vibration of muscle receptors of the cat. J Physiol 192:773–800PubMed Brown MC, Engberg I, Matthews PB (1967) The relative sensitivity to vibration of muscle receptors of the cat. J Physiol 192:773–800PubMed
go back to reference Davis KA (1999) Effects of somatosensory stimulation on neurons in the inferior colliculus. Assoc Res Otolaryngol Abstr 22:215–216 Davis KA (1999) Effects of somatosensory stimulation on neurons in the inferior colliculus. Assoc Res Otolaryngol Abstr 22:215–216
go back to reference Kaltenbach JA, McCaslin DL (1996) Increases in spontaneous activity in the dorsal cochlear nucleus following exposure to high intensity sound: a possible neural correlate of tinnitus. Auditory Neurosci 3:57–78 Kaltenbach JA, McCaslin DL (1996) Increases in spontaneous activity in the dorsal cochlear nucleus following exposure to high intensity sound: a possible neural correlate of tinnitus. Auditory Neurosci 3:57–78
go back to reference Kanold PO, Young ED (2001) Proprioceptive information from the pinna provides somatosensory input to cat dorsal cochlear nucleus. J Neurosci 21:7848–7858PubMed Kanold PO, Young ED (2001) Proprioceptive information from the pinna provides somatosensory input to cat dorsal cochlear nucleus. J Neurosci 21:7848–7858PubMed
go back to reference Levine RA (1999a) Somatic (craniocervical) tinnitus and the dorsal cochlear nucleus hypothesis. Am J Otolaryngol 20:351–362PubMed Levine RA (1999a) Somatic (craniocervical) tinnitus and the dorsal cochlear nucleus hypothesis. Am J Otolaryngol 20:351–362PubMed
go back to reference Levine RA (1999b) Somatic modulation appears to be a fundamental attribute of tinnitus. In: Hazell J (ed) Proceedings of the Sixth International Tinnitus Seminar, London, pp 193–197 Levine RA (1999b) Somatic modulation appears to be a fundamental attribute of tinnitus. In: Hazell J (ed) Proceedings of the Sixth International Tinnitus Seminar, London, pp 193–197
go back to reference Levine RA, Kiang NYS (1995) A conversation about tinnitus. In: Vernon J, Møller AR (eds) Mechanisms of tinnitus. Allyn and Bacon, Boston, pp 149–162 Levine RA, Kiang NYS (1995) A conversation about tinnitus. In: Vernon J, Møller AR (eds) Mechanisms of tinnitus. Allyn and Bacon, Boston, pp 149–162
go back to reference Melcher JR, Sigalovsky I, Guinan JJ, Levine RA (2000) Lateralized tinnitus studied with functional magnetic resonance imaging: abnormal inferior colliculus. J Neurophysiol 83:1058–1072PubMed Melcher JR, Sigalovsky I, Guinan JJ, Levine RA (2000) Lateralized tinnitus studied with functional magnetic resonance imaging: abnormal inferior colliculus. J Neurophysiol 83:1058–1072PubMed
go back to reference Møller AR, Møller MB, Yokota M (1992) Some forms of tinnitus may involve the extralemniscal auditory pathway. Laryngoscope 102:1165–1171PubMed Møller AR, Møller MB, Yokota M (1992) Some forms of tinnitus may involve the extralemniscal auditory pathway. Laryngoscope 102:1165–1171PubMed
go back to reference Rock EH (1995) Objective tinnitus and tensor tympani muscle. Int Tinn J 1:30–37 Rock EH (1995) Objective tinnitus and tensor tympani muscle. Int Tinn J 1:30–37
go back to reference Rubinstein B (1993) Tinnitus and craniomandibular disorders—is there a link? Swed Dental J Suppl 95:1–46 Rubinstein B (1993) Tinnitus and craniomandibular disorders—is there a link? Swed Dental J Suppl 95:1–46
go back to reference Wilson JP (1986) Otoacoustic emissions and tinnitus. Scand Audiol (Suppl) 25:109–119 Wilson JP (1986) Otoacoustic emissions and tinnitus. Scand Audiol (Suppl) 25:109–119
Metadata
Title
CNS somatosensory-auditory interactions elicit or modulate tinnitus
Authors
R. A. Levine
M. Abel
H. Cheng
Publication date
01-12-2003
Publisher
Springer-Verlag
Published in
Experimental Brain Research / Issue 4/2003
Print ISSN: 0014-4819
Electronic ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-003-1747-3

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