Efferent Inhibition of the Cochlea
Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release acetylcholine (ACh) to inhibit hair cells through activation of calcium-dependent potassium channels. In the mammalian cochlea, ACh shunts and su...
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Published in | Cold Spring Harbor perspectives in medicine Vol. 9; no. 5; p. a033530 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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United States
Cold Spring Harbor Laboratory Press
01.05.2019
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Abstract | Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release acetylcholine (ACh) to inhibit hair cells through activation of calcium-dependent potassium channels. In the mammalian cochlea, ACh shunts and suppresses outer hair cell (OHC) electromotility, reducing the essential amplification of basilar membrane motion. Consequently, medial olivocochlear neurons that inhibit OHCs reduce the sensitivity and frequency selectivity of afferent neurons driven by cochlear vibration of inner hair cells (IHCs). The cholinergic synapse on hair cells involves an unusual ionotropic ACh receptor, and a near-membrane postsynaptic cistern. Lateral olivocochlear (LOC) neurons modulate type I afferents by still-to-be-defined synaptic mechanisms. Olivocochlear neurons can be activated by a reflex arc that includes the auditory nerve and projections from the cochlear nucleus. They are also subject to modulation by higher-order central auditory interneurons. Through its actions on cochlear hair cells, afferent neurons, and higher centers, the olivocochlear system protects against age-related and noise-induced hearing loss, improves signal coding in noise under certain conditions, modulates selective attention to sensory stimuli, and influences sound localization. |
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AbstractList | Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release acetylcholine (ACh) to inhibit hair cells through activation of calcium-dependent potassium channels. In the mammalian cochlea, ACh shunts and suppresses outer hair cell (OHC) electromotility, reducing the essential amplification of basilar membrane motion. Consequently, medial olivocochlear neurons that inhibit OHCs reduce the sensitivity and frequency selectivity of afferent neurons driven by cochlear vibration of inner hair cells (IHCs). The cholinergic synapse on hair cells involves an unusual ionotropic ACh receptor, and a near-membrane postsynaptic cistern. Lateral olivocochlear (LOC) neurons modulate type I afferents by still-to-be-defined synaptic mechanisms. Olivocochlear neurons can be activated by a reflex arc that includes the auditory nerve and projections from the cochlear nucleus. They are also subject to modulation by higher-order central auditory interneurons. Through its actions on cochlear hair cells, afferent neurons, and higher centers, the olivocochlear system protects against age-related and noise-induced hearing loss, improves signal coding in noise under certain conditions, modulates selective attention to sensory stimuli, and influences sound localization.Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release acetylcholine (ACh) to inhibit hair cells through activation of calcium-dependent potassium channels. In the mammalian cochlea, ACh shunts and suppresses outer hair cell (OHC) electromotility, reducing the essential amplification of basilar membrane motion. Consequently, medial olivocochlear neurons that inhibit OHCs reduce the sensitivity and frequency selectivity of afferent neurons driven by cochlear vibration of inner hair cells (IHCs). The cholinergic synapse on hair cells involves an unusual ionotropic ACh receptor, and a near-membrane postsynaptic cistern. Lateral olivocochlear (LOC) neurons modulate type I afferents by still-to-be-defined synaptic mechanisms. Olivocochlear neurons can be activated by a reflex arc that includes the auditory nerve and projections from the cochlear nucleus. They are also subject to modulation by higher-order central auditory interneurons. Through its actions on cochlear hair cells, afferent neurons, and higher centers, the olivocochlear system protects against age-related and noise-induced hearing loss, improves signal coding in noise under certain conditions, modulates selective attention to sensory stimuli, and influences sound localization. Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release acetylcholine (ACh) to inhibit hair cells through activation of calcium-dependent potassium channels. In the mammalian cochlea, ACh shunts and suppresses outer hair cell (OHC) electromotility, reducing the essential amplification of basilar membrane motion. Consequently, medial olivocochlear neurons that inhibit OHCs reduce the sensitivity and frequency selectivity of afferent neurons driven by cochlear vibration of inner hair cells (IHCs). The cholinergic synapse on hair cells involves an unusual ionotropic ACh receptor, and a near-membrane postsynaptic cistern. Lateral olivocochlear (LOC) neurons modulate type I afferents by still-to-be-defined synaptic mechanisms. Olivocochlear neurons can be activated by a reflex arc that includes the auditory nerve and projections from the cochlear nucleus. They are also subject to modulation by higher-order central auditory interneurons. Through its actions on cochlear hair cells, afferent neurons, and higher centers, the olivocochlear system protects against age-related and noise-induced hearing loss, improves signal coding in noise under certain conditions, modulates selective attention to sensory stimuli, and influences sound localization. |
Author | Fuchs, Paul Albert Lauer, Amanda M. |
AuthorAffiliation | The Center for Hearing and Balance, Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205-2195 |
AuthorAffiliation_xml | – name: The Center for Hearing and Balance, Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205-2195 |
Author_xml | – sequence: 1 givenname: Paul Albert surname: Fuchs fullname: Fuchs, Paul Albert – sequence: 2 givenname: Amanda M. surname: Lauer fullname: Lauer, Amanda M. |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/30082454$$D View this record in MEDLINE/PubMed |
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209 2019050111440130000_9.5.a033530.152 2019050111440130000_9.5.a033530.87 2019050111440130000_9.5.a033530.86 2019050111440130000_9.5.a033530.89 2019050111440130000_9.5.a033530.83 2019050111440130000_9.5.a033530.82 2019050111440130000_9.5.a033530.85 2019050111440130000_9.5.a033530.84 2019050111440130000_9.5.a033530.81 (2019050111440130000_9.5.a033530.2) 2017; 11 2019050111440130000_9.5.a033530.80 (2019050111440130000_9.5.a033530.7) 1982; 329 2019050111440130000_9.5.a033530.18 2019050111440130000_9.5.a033530.17 (2019050111440130000_9.5.a033530.70) 2014; 43 2019050111440130000_9.5.a033530.19 2019050111440130000_9.5.a033530.13 2019050111440130000_9.5.a033530.16 2019050111440130000_9.5.a033530.15 2019050111440130000_9.5.a033530.10 2019050111440130000_9.5.a033530.98 2019050111440130000_9.5.a033530.12 2019050111440130000_9.5.a033530.11 2019050111440130000_9.5.a033530.99 2019050111440130000_9.5.a033530.94 (2019050111440130000_9.5.a033530.117) 1999; 135 2019050111440130000_9.5.a033530.93 2019050111440130000_9.5.a033530.96 2019050111440130000_9.5.a033530.95 2019050111440130000_9.5.a033530.90 2019050111440130000_9.5.a033530.92 (2019050111440130000_9.5.a033530.14) 2002; 172 2019050111440130000_9.5.a033530.29 2019050111440130000_9.5.a033530.25 2019050111440130000_9.5.a033530.24 2019050111440130000_9.5.a033530.27 2019050111440130000_9.5.a033530.26 2019050111440130000_9.5.a033530.21 2019050111440130000_9.5.a033530.20 2019050111440130000_9.5.a033530.23 2019050111440130000_9.5.a033530.22 (2019050111440130000_9.5.a033530.143) 1987; 57 |
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Snippet | Cholinergic efferent neurons originating in the brainstem innervate the acoustico-lateralis organs (inner ear, lateral line) of vertebrates. These release... |
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SubjectTerms | Animals Cochlea - pathology Cochlea - physiology Efferent Pathways - physiology Hair Cells, Auditory, Inner - cytology Hair Cells, Auditory, Inner - physiology Hair Cells, Auditory, Outer - cytology Hair Cells, Auditory, Outer - physiology Humans Ion Channels - physiology Mice Mice, Knockout Neurotransmitter Agents - physiology Synapses - physiology Synaptic Transmission |
Title | Efferent Inhibition of the Cochlea |
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