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Original Article

Relation Of Structural Damage To Exposure Time And Intensity In Acoustic Trauma

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Pages 220-226 | Published online: 08 Jul 2009

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Read on this site (17)

Ken Kojima, Masahiro Matsumoto & Juichi Ito. (2007) Severe acoustic trauma in adult rats induced by short duration high intensity sound. Acta Oto-Laryngologica 127:sup557, pages 26-29.
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Bo Hua Hu, Wei Guo, Pei Ying Wang, Donald Henderson, Si Chang Jiang. (2000) Intense Noise-induced Apoptosis in Hair Cells of Guinea Pig Cochleae. Acta Oto-Laryngologica 120:1, pages 19-24.
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Kazuhiko Takahashi, Jun Kusakari, Shinichi Kimura, Tetsuro Wada & Akira Hara. (1996) The Effect of Methylprednisolone on Acoustic Trauma. Acta Oto-Laryngologica 116:2, pages 209-212.
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R. M. Alles & A. Pye. (1993) Cochlear damage in guinea pigs following contralateral sound stimulation with and without gentamicin. British Journal of Audiology 27:3, pages 183-193.
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Minoru Takeyama, Jun Kusakari, Norihide Nishikawa & Tetsuro Wada. (1992) The Effect of Crossed Olivo-cochlear Bundle Stimulation on Acoustic Trauma. Acta Oto-Laryngologica 112:2, pages 205-209.
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F. W. J. Albers, J. C. M. J. De Groot, J. E. Veldman & E. H. Huizing. (1988) Ultrastructure of the Organ of Corti in Experimental Hydrops. Acta Oto-Laryngologica 105:3-4, pages 281-291.
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Larry G. Duckert & Josef M. Miller. (1984) Morphological Changes Following Cochlear Implantation in the Animal Model. Acta Oto-Laryngologica 97:sup412, pages 28-37.
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Larry G. Duckert & Josef M. Miller. (1984) Morphological Changes Following Cochlear Implantation in the Animal Model. Acta Oto-Laryngologica 98:sup411, pages 28-37.
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A. Uziel, M. Marot & R. Pujol. (1983) The Gunn Rat: An Experimental Model for Central Deafness. Acta Oto-Laryngologica 95:5-6, pages 651-656.
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Marc Lenoir, Michel Marot & Alain Uziel. (1983) Comparative Ototoxicity of Four Aminoglycosidic Antibiotics during the Critical Period of Cochlear Development in the Rat. Acta Oto-Laryngologica 96:sup405, pages 1-16.
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M. Lenoir & R. Pujol. (1980) Sensitive Period to Acoustic Trauma in the Rat Pup Cochlea: Histological Findings. Acta Oto-Laryngologica 89:3-6, pages 317-322.
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B. Erlandsson, H. Hlkanson, A. Ivarsson, P. Nilsson & J. Wersäll. (1980) Hair Cell Damage In The Guinea Pig Due To Different Kinds Of Noise. Acta Oto-Laryngologica 89:sup367, pages 1-43.
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. (1980) Chapter IV. Concluding Remarks. Acta Oto-Laryngologica 89:sup366, pages 58-66.
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G. Rebillard, M. Rebillard, E. Carlier & R. Pujol. (1976) Histo-Physiological Relationships in the Deaf White Cat Auditory System. Acta Oto-Laryngologica 82:1-6, pages 48-56.
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F. Scheibe, U. Hache, H. Haupt & H. -J. Gerhardt. (1975) Proteinkonzentration Der Meerschweinchen-Perilymphe Nach Schallbelastung. Acta Oto-Laryngologica 80:1-6, pages 32-37.
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Articles from other publishers (74)

Wei Dong & Sebastiaan W.F. Meenderink. (2023) Imaging the Ear Anatomy and Function Using Optical Coherence Tomography Vibrometry. Seminars in Hearing.
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Xue-min Chen, Xin-miao Xue, Ning Yu, Wei-wei Guo, Shuo-long Yuan, Qing-qing Jiang & Shi-ming Yang. (2022) The Role of Genetic Variants in the Susceptibility of Noise-Induced Hearing Loss. Frontiers in Cellular Neuroscience 16.
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Hans Slabbekoorn, JoAnn McGee & Edward J. Walsh. 2018. Effects of Anthropogenic Noise on Animals. Effects of Anthropogenic Noise on Animals 243 276 .
Noura Gannouni, Marc Lenoir, Khemais Ben Rhouma, Michèle El May, Olfa Tebourbi, Jean Luc Puel & Abada Mhamdi. (2015) Cochlear neuropathy in the rat exposed for a long period to moderate-intensity noises. Journal of Neuroscience Research 93:6, pages 848-858.
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Eriko Kanaya, Kohei Yamahara, Takayuki Okano, Atsuhiro Yoshida, Tatsuya Katsuno, Hirohide Takebayashi, Juichi Ito & Norio Yamamoto. (2015) Expression of the Olig gene family in the developing mouse inner ear. Gene Expression Patterns 17:2, pages 79-86.
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R.E. Venn, A.R. McBrearty, D. McKeegan & J. Penderis. (2014) The effect of magnetic resonance imaging noise on cochlear function in dogs. The Veterinary Journal 202:1, pages 141-145.
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María G. López-Pacheco, Luis P. Sánchez-Fernández & Herón Molina-Lozano. (2014) A method for environmental acoustic analysis improvement based on individual evaluation of common sources in urban areas. Science of The Total Environment 468-469, pages 724-737.
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Marta Solé, Marc Lenoir, Mercè Durfort, Manel López-Bejar, Antoni Lombarte, Mike van der Schaar & Michel André. (2013) Does exposure to noise from human activities compromise sensory information from cephalopod statocysts?. Deep Sea Research Part II: Topical Studies in Oceanography 95, pages 160-181.
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Alistair G. Fryatt, Mike Mulheran, Julie Egerton, Martin J. Gunthorpe & Blair D. Grubb. (2011) Ototrauma induces sodium channel plasticity in auditory afferent neurons. Molecular and Cellular Neuroscience 48:1, pages 51-61.
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Balázs Lendvai, György B. Halmos, Gábor Polony, Judit Kapocsi, Tamás Horváth, Máté Aller, E. Sylvester Vizi & Tibor Zelles. (2011) Chemical neuroprotection in the cochlea: The modulation of dopamine release from lateral olivocochlear efferents. Neurochemistry International 59:2, pages 150-158.
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Kevin K. Ohlemiller, Mary E. Rybak Rice, Erin A. Rellinger & Amanda J. Ortmann. (2011) Divergence of noise vulnerability in cochleae of young CBA/J and CBA/CaJ mice. Hearing Research 272:1-2, pages 13-20.
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Kevin K. Ohlemiller. (2008) Recent findings and emerging questions in cochlear noise injury. Hearing Research 245:1-2, pages 5-17.
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Josef M. Miller, Colleen G. Le Prell, Diane M. Prieskorn, Noel L. Wys & Richard A. Altschuler. (2007) Delayed neurotrophin treatment following deafness rescues spiral ganglion cells from death and promotes regrowth of auditory nerve peripheral processes: Effects of brain‐derived neurotrophic factor and fibroblast growth factor. Journal of Neuroscience Research 85:9, pages 1959-1969.
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Jing Wang, Bernadette Pignol, Pierre-Etienne Chabrier, Takaomi Saido, Ruth Lloyd, Yong Tang, Marc Lenoir & Jean-Luc Puel. (2007) A novel dual inhibitor of calpains and lipid peroxidation (BN82270) rescues the cochlea from sound trauma. Neuropharmacology 52:6, pages 1426-1437.
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Kevin K. Ohlemiller & Patricia M. Gagnon. (2007) Genetic dependence of cochlear cells and structures injured by noise. Hearing Research 224:1-2, pages 34-50.
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Tsumoru Terunuma, Shimako Kawauchi, Miwako Kajihara, Satoru Takahashi & Akira Hara. (2003) Effect of acoustic stress on glucocorticoid receptor mRNA in the cochlea of the guinea pig. Molecular Brain Research 120:1, pages 65-72.
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Nancy G Hight, Sandra L McFadden, Donald Henderson, Robert F Burkard & Thomas Nicotera. (2003) Noise-induced hearing loss in chinchillas pre-treated with glutathione monoethylester and R-PIA. Hearing Research 179:1-2, pages 21-32.
Crossref
Per Nylén, Ann-Christin Johnson & Anders Englund. 2001. Patty's Toxicology. Patty's Toxicology.
Tsumoru Terunuma, Akira Hara, Masamitsu Senarita, Hozumi Motohashi & Jun Kusakari. (2001) Effect of acoustic overstimulation on regulation of glucocorticoid receptor mRNA in the cochlea of the guinea pig. Hearing Research 151:1-2, pages 121-124.
Crossref
Deepa B Rao & Laurence D Fechter. (2000) Increased noise severity limits potentiation of noise induced hearing loss by carbon monoxide. Hearing Research 150:1-2, pages 206-214.
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Kevin K Ohlemiller, James S Wright & Arnold F Heidbreder. (2000) Vulnerability to noise-induced hearing loss in ‘middle-aged’ and young adult mice: a dose–response approach in CBA, C57BL, and BALB inbred strains. Hearing Research 149:1-2, pages 239-247.
Crossref
Tetsuro Wada, Kazuhiko Takahashi, Zenya Ito, Akira Hara, Hideto Takahashi & Jun Kusakari. (1999) The protective effect of the sympathetic nervous system against acoustic trauma. Auris Nasus Larynx 26:4, pages 375-382.
Crossref
Tetsuro Wada, Kazuhiko Takahashi, Sinichi Kimura, Yuji Ase, Akira Hara & Jun Kusakari. (1995) The Effect of the Sympathetic Nervous System upon Susceptibility to Acoustic Trauma. Auris Nasus Larynx 22:2, pages 86-92.
Crossref
Ann-Christin Johnson & Barbara Canlon. (1994) Progressive hair cell loss induced by toluene exposure. Hearing Research 75:1-2, pages 201-208.
Crossref
R. Rajan, D. R. F. Irvine, L. Z. Wise & P. Heil. (2004) Effect of unilateral partial cochlear lesions in adult cats on the representation of lesioned and unlesioned cochleas in primary auditory cortex. Journal of Comparative Neurology 338:1, pages 17-49.
Crossref
R. Pujol, M. Lenoir, S. Ladrech, F. Tribillac & G. Rebillard. 1992. Auditory Physiology and Perception. Auditory Physiology and Perception 45 52 .
Donald Henderson, Fred Farzi & Richard Danielson. (1990) The concept of critical level and impulse noise. Environment International 16:4-6, pages 353-361.
Crossref
A. Pye & L. Ulehlova. (1989) A comparison of initial and permanent surface changes to guinea pig hair cells after acoustic overstimulation. Archives of Oto-Rhino-Laryngology 246:1, pages 3-10.
Crossref
Peter W.P Collins. (1988) Synergistic interactions of gentamicin and pure tones causing cochlear hair cell loss in pigmented guinea pigs. Hearing Research 36:2-3, pages 249-259.
Crossref
M. A. El Begermy, M. Galić & W. Giebel. (1987) A functional and histological study of the combined effects of gentamicin and aminooxyacetic acid on the organ of Corti of the guinea pig. Archives of Oto-Rhino-Laryngology 244:3, pages 185-189.
Crossref
A. Pye. (1987) Comparison of various short noise exposures in albino and pigmented guinea pigs. Archives of Oto-Rhino-Laryngology 243:6, pages 411-416.
Crossref
L. G. Duckert & Josef M. Miller. (2016) Mechanisms of Electrically Induced Damage after Cochlear Implantation. Annals of Otology, Rhinology & Laryngology 95:2, pages 185-189.
Crossref
Norma Slepecky. (1986) Overview of mechanical damage to the inner ear: noise as a tool to probe cochlear function. Hearing Research 22:1-3, pages 307-321.
Crossref
Per O. L. Nilsson, Jan Grenner, Bharti J. Katbamna, Sven Rydmarker & Derek E. Dunn. 1986. Basic and Applied Aspects of Noise-Induced Hearing Loss. Basic and Applied Aspects of Noise-Induced Hearing Loss 393 404 .
Donald Henderson & R. P. Hamernik. 1986. Basic and Applied Aspects of Noise-Induced Hearing Loss. Basic and Applied Aspects of Noise-Induced Hearing Loss 369 378 .
Hisashi Yokoi & Noriyuki Yanagita. (1984) Blast injury to sensory hairs: A study in the guinea pig using scanning electron microscopy. Archives of oto-rhino-laryngology 240:3, pages 263-270.
Crossref
Ade Pye. (1984) The effects of short noise exposures in the guinea pig. Archives of oto-rhino-laryngology 240:2, pages 107-114.
Crossref
G.K. Yates, A.R. Cody & B.M. Johnstone. (1983) Recovery of eighth nerve action potential thresholds after exposure to short, intense pure tones: similarities with temporary threshold shift. Hearing Research 12:3, pages 305-322.
Crossref
Neil T. Shepard & Paul J. Abbas. (2016) Compound Action-Potential Tuning Curves in Normal and Acoustically Traumatized Cats. Annals of Otology, Rhinology & Laryngology 92:5, pages 496-503.
Crossref
Larry G. Duckert. (2009) Morphological changes in the normal and neomycin‐perfused guinea pig cochlea following chronic prosthetic implantation.. The Laryngoscope 93:7, pages 841-855.
Crossref
Barbara A. Bohne & Kay D. Rabbitt. (1983) Holes in the reticular lamina after noise exposure: Implication for continuing damage in the organ of Corti. Hearing Research 11:1, pages 41-53.
Crossref
H. Haupt, F. Scheibe & K. Bergmann. (1983) Zur Gesamtaktivit�t der Laktatdehydrogenase von Perilymphe, Plasma und Liquor cerebrospinalis unbelasteter und schallbelasteter MeerschweinchenOn the total activity of lactate dehydrogenase of perilymph, plasma, and cerebrospinal fluid of unexposed and sound-exposed guinea pigs. Archives of Oto-Rhino-Laryngology 238:1, pages 77-85.
Crossref
KENNETH R. HENRY. 1983. Development of Auditory and Vestibular Systems. Development of Auditory and Vestibular Systems 273 308 .
Martha G. Pierson & Aage R. Møller. (1982) Corresponding effects of acoustic fatigue on the cochlear microphonic and the compound action potential. Hearing Research 6:1, pages 61-82.
Crossref
Luboš Voldřich & Libuše Úlehlová. (1982) Correlation of the development of acoustic trauma to the intensity and time of acoustic overstimulation. Hearing Research 6:1, pages 1-6.
Crossref
W. Dixon Ward, Arndt J. DuvallIIIIII, Peter A. Santi & Christopher W. Turner. (2016) Total Energy and Critical Intensity Concepts in Noise Damage. Annals of Otology, Rhinology & Laryngology 90:6, pages 584-590.
Crossref
H. -M. Theopold & R. Scheler. (1981) The combination of scanning and transmission electron microscopy techniques in pathology of the organ of corti in guinea pigsDie kombinierte Anwendung von Raster-und Transmissions-Elektronenmikroskopischen Techniken am Innenohr des Meerschweinchens. Archives of Oto-Rhino-Laryngology 232:3, pages 233-240.
Crossref
Ade Pye. (1981) Acoustic trauma effects with varying exposure times. Archives of Oto-Rhino-Laryngology 230:3, pages 265-271.
Crossref
J. Ritter, M. Anniko & H.-J. Gerhardt. (1981) Some new aspects on damages in the organ of corti after pure tone exposureNeue Aspekte im Hinblick auf Sch�digungen im Cortischen Organ nach Reintonbeschallung. Archives of Oto-Rhino-Laryngology 232:2, pages 187-197.
Crossref
H. Rauchegger & H. Spoendlin. (1981) Damage of the basilar membrane by acoustic stimulationSch�digung der Basilarmembran durch akustischen Reiz. Archives of Oto-Rhino-Laryngology 232:2, pages 117-122.
Crossref
K. D. Franke & E. Lehnhardt. 1981. Begutachtung der Schwerhörigkeit bei Lärmarbeitern. Begutachtung der Schwerhörigkeit bei Lärmarbeitern 1 13 .
H. -M. Theopold. (1980) Innenohrpathologie ? Raster- und transmissionselektronenmikroskopische Befunde im Tierexperiment und an der menschlichen CochleaPathology of the inner ear: Scanning- and transmissionelectronmicroscopic findings in animal experiments and in human cochlea. Archives of Oto-Rhino-Laryngology 227:3-4, pages 403-406.
Crossref
Luboš Voldřich & Libuše Úlehlová. (2009) Comparative method for the study of structural damage in acoustic trauma. The Laryngoscope 90:11, pages 1887-1891.
Crossref
Donald Robertson & Brian M. Johnstone. (1980) Acoustic trauma in the guinea pig cochlea: Early changes in ultrastructure and neural threshold. Hearing Research 3:2, pages 167-179.
Crossref
Chia-Shong Chen & G. C. Aberdeen. (1980) Potentiation of acoustic-trauma-induced audiogenic seizure susceptibility by salicylates in mice. Experientia 36:3, pages 330-331.
Crossref
D. Robertson, B.M. Johnstone & T.J. McGill. (1980) Effects of loud tones on the inner ear: A combined electrophysiological and ultrastructural study. Hearing Research 2:1, pages 39-53.
Crossref
Fred Ramprashad, Jack P. Landolt, Kenneth E. Money, Diana Clark & Jerry Laufer. (2005) A morphometric study of the cochlea of the little brown bat ( Myotis lucifugus ) . Journal of Morphology 160:3, pages 345-358.
Crossref
H. Berndt & H. Wagner. (1979) Influence of thyroid state and improved hypoxia tolerance on noise-induced cochlea damage. Archives of Oto-Rhino-Laryngology 224:1-2, pages 125-128.
Crossref
H. Spoendlin. (1979) Anatomisch-pathologische Aspekte der Elektrostimulation des ertaubten InnenohresAnatomical and pathological aspects of the electrical stimulation of the deaf inner ear. Archives of Oto-Rhino-Laryngology 223:1, pages 1-75.
Crossref
Hartmut Berndt & Hermann Wagner. (1978) Der Einfluß der Schilddrüsenfunktion auf den lärmbedingten InnenohrschadenInfluence of thyroid state on noise-induced cochlea damage. Archives of Oto-Rhino-Laryngology 221:3, pages 183-187.
Crossref
R. Pujol, E. Carlier & C. Devigne. (2004) Different patterns of cochlear innervation during the development of the kitten. Journal of Comparative Neurology 177:3, pages 529-535.
Crossref
J. Ritter & H. -J. Gerhardt. (1978) Morphologische Ver�nderungen im Cortischen Organ des Meerschweinchens nach Reinton-DauerbeschallungMorphologic alterations in the organ of Corti of guinea pigs following pure tone exposure. Archives of Oto-Rhino-Laryngology 220-220:1-2, pages 73-87.
Crossref
Chia-Shong Chen & G.Richard Gates. (1977) Maturational state of the auditory receptor system and the sensitive period for priming for audiogenic seizure in mice. Experimental Neurology 54:2, pages 283-290.
Crossref
Nelson Y. S. Kiang, M. Charles Liberman & Robert A. Levine. (2016) Auditory-Nerve Activity in Cats Exposed to Ototoxic Drugs and High-Intensity Sounds. Annals of Otology, Rhinology & Laryngology 85:6, pages 752-768.
Crossref
Ellis Douek, H.C. Dodson, L.H. Bannister, P. Ashcroft & K.N. Humphries. (1976) EFFECTS OF INCUBATOR NOISE ON THE COCHLEA OF THE NEWBORN. The Lancet 308:7995, pages 1110-1113.
Crossref
Moshe Rubinstein & Nechama Pluznik. (2016) Effect of Anesthesia on Susceptibility to Acoustic Trauma. Annals of Otology, Rhinology & Laryngology 85:2, pages 276-280.
Crossref
James G. McCormick & Alfred L. Nuttall. 1976. The Biology of the Guinea Pig. The Biology of the Guinea Pig 281 303 .
K. Bergmann. (1976) Versuche zur medikament�sen Beeinflussung der L�rmschwerh�rigkeitExperiments on the medicamental treatment of the noise-induced cochlear damage. Archives of Oto-Rhino-Laryngology 212:3, pages 171-177.
Crossref
G.Richard Gates & Chia-Shong Chen. (1975) Priming for audiogenic seizures in BALB/c mice as a function of stimulus exposure duration and intensity. Experimental Neurology 46:1, pages 209-214.
Crossref
Arndt J. DuvallIIIIII, W. Dixon Ward & Kathryn E. Lauhala. (2016) Stria Ultrastructure and Vessel Transport in Acoustic Trauma. Annals of Otology, Rhinology & Laryngology 83:4, pages 498-514.
Crossref
Lars-Göran Johnsson. (2016) Sequence of Degeneration of Corti's Organ and its First-Order Neurons. Annals of Otology, Rhinology & Laryngology 83:3, pages 294-303.
Crossref
H. Spoendlin & J. -P. Brun. (1974) The block-surface technique for evaluation of cochlear pathology. Archives of Oto-Rhino-Laryngology 208:2, pages 137-145.
Crossref
H. Spoendlin. 1974. Facts and Models in Hearing. Facts and Models in Hearing 18 32 .
H. Spoendlin. 1973. Basic Mechanisms in Hearing. Basic Mechanisms in Hearing 185 234 .

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