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Hearing Research 1999: Vol 127 Index PDF

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Preview Hearing Research 1999: Vol 127 Index

* a ELSEVIER Hearing Research 127 (1999) 167 Author Index Volume 127 Abbas, P.J.. see Rubinstein, J.T. (127) 108 Adjustable frequency selectivity of auditory forebrain neurons re- corded in a freely moving songbird via radiotelemetry (127) 41 Beitz. E.. see Seebacher, T. Boettcher, F.A., see Canlon, B Orlando, M., see Walton, J. (127) 86 Burkard, R., see Walton, J. (127) 86 Oysu, C., see Ozturan, O. (127) 129 Ozturan, O., and Oysu, ¢ Canlon, B., Ryan, A.F. and Boettcher, F.A Influence of spontaneous otoacoustic emissions on distortion product On the factors required for obtaining protection against noise trauma otoacoustic emission amplitudes (127) 129 by prior acoustic experience (127) 158 Caspary, D.M., see Nakayama, M. (127) 103 Puil, E., see Tennigkeit, F. (127) 77 Chiu, J.-H., see Tu, T.-Y. (127) 149 Clock Eddins, A., Zuskov, M. and Salvi, R.J Rubinstein, J.T.. Wilson, B.S., Finley, C.C. and Abbas, P.J Changes in distortion product otoacoustic emissions during prolonged Pseudospontaneous activity: stochastic independence of auditory noise exposure (127) 119 fibers with electrical stimulation (127) 108 Culling, J.1 Ruckenstein, M.J., and Hu, | The existence region of Huggins’ pitch (127) 143 Antibody deposition in th laris of the MRL-Fas™ mouse (i|z?Z /) 137 Dolan, D.F., see Yamasoba, T. ( Ruppersberg, J.P., see Seebachet Duncan, R.K., Eisen, M.D. and Saunders, J.( Ryan, A.F., see Canlon, B. (127 Distal separation of chick cochlear hair cell stereocilia: analysis o contact-constraint models (127) 22 Salvi, R.J.. see Clock Eddins, A. (127) 119 Duncan, R.K., see Eisen, M.D Sato, M., Leake, P.A. and Hradek, G.1 Durham, D.. see Edmonds Jr., . Postnatal development of the organ of Corti a light micro- scopic morphometric study (127) | Edmonds Jr., J.L.. Hoover, A. and Durham, D Saunders, J.C., see Duncan, R.K. (127) 22 Breed differences in deafferentation-induced neuronal cell death anc Saunders, J.C., see Eisen, M.D. (127) 14 shrinkage in chick cochlear nucleus (127) 62 Schultz, J.E., see Seebacher, T. (12 7) 95 Eisen, M.D., see Duncan, R.K. (127) 22 Schwarz, D.W.F., see Tennigkeit, F. (127) 77 Eisen, M.D., Duncan, R.K. and Saunders, J.C. Seebacher, T., Beitz, E.. Kumagami, H., Wild, K., Ruppersberg, J.P. and he tip link’s role in asymmetric stereocilia motion of chick cochlear Schultz, J.I hair cells (127) 14 Expression of membrane-bound and cytosolic guanylyl cyclases in rat inner ear (127) 95 Finley, C.C., see Rubinstein, | 127) 108 Shu, C.-H., see Tu, T.-Y Skellett, R.A., Helfert, R.H., see Nakayama, M. (127) Reply to Canlon et al.: “On the factors required for obtaining protec- Hoover, L.A., see Edmonds Jr., : (127 tion against noise trauma by prior acoustic experience” (127) 161 Hradek, G.T., see Sato, M. (127 Hu, L., see Ruckenstein, M.J Fennigkeit, F., Schwarz, D.W.F. and Puil, f Modulation of frequency selectivity by Na’- and K°-conductances in Klump, G.M., see Nieder neurons of auditory thalamus (127) 77 Konrad, H.R., see Nakayama, M. (127) 103 Thorne, P.R., see Munoz, D.J.B. (127) 55 Kumagami, H., see Seebacher, T Tu, T.-Y., Chiu, J.-H., Shu, C.-H. and Lien, C.-I cAMP mediates transepithelial K” and Na’ transport in a sirial mar- Leake, P.A., see Sato, M. (127) | ginal cell line (127) 149 Lien, C.-F., see Tu, T.-Y. (127) 149 Walton, J., Orlando, M. and Burkard, R McFie, C., see Munoz, D.J.B. (127) 55 Auditory brainstem response forward-masking recovery functions Milbrandt, J.C., see Nakayama, M. (127) 103 older humans with normal hearing (127) 86 Miller, J.M., see Yamasoba, (127) 31 Wild, K., see Seebacher, T. (127) 95 Munoz, D.J.B., McFie, C. and Thorne, P.R Wilson, B.S., see Rubinstein, J.T. (127) 108 Modulation of cochlear blood flow by extracellular purines (127) 55 Yamasoba, T.. Dolan, D.F. and Miller, J.M Nakayama, M., Caspary, D.M., Konrad, H.R., Milbrandt, J.C. and Hel- Acquired resistance to acoustic trauma by sound conditioning is pri- fert, R.H marily mediated by changes restricted to the cochlea, not by systemic Age-related changes in [H]strychnine binding in the vestibular nuclei responses (127) 31 of rats (127) 103 Nieder, A., and Klump, G.M Zuskov, M., see Clock Eddins, A. (127) 119 9 t << ELSEVIER Hearing Research 127 (1999) 168-170 Subject Index Volume 127 Acoustic trauma Autoimmune Noise-induced hearing loss; Sound conditioning; Auditory toughening; Cochlea; Systemic lupus erythematosus: Antibody; Stria vascularis Guinea pig: Cochlea (Yamasoba, T. (127) 31) (Ruckenstein, M.J. (127) 137) Adenosine Avian Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig cochlea: Auditory; Cochlea removal; Nucleus magnocellularis (Edmonds Jr., J.L. Laser Doppler flowmetry; Pl receptor; Pl receptor antagonist; P2 recep- (127) 62) tor; P2 receptor antagonist: Perilymph; Purine; Spiral ligament; Stria vascularis; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) Basilar membrane Development; Organ of Corti; Hair cell; Tunnel of Corti (Sato, M. (127) 1) Adenosine; Cochlear blood flow; Guinea pig cochlea; Laser Doppler Basilar papilla flowmetry; Pl receptor; Pl receptor antagonist; P2 receptor; P2 receptor Auditory; Chick; Stereocilia motion; Hair cell; Tip link (Eisen, antagonist; Perilymph; Purine; Spiral ligament; Stria vascularis; Uridine (127) 14) 5’-triphosphate (Munoz, D.J.B. (127) 55) Binaural Aging Dichotic; Pitch; Huggins (Culling, J.F. (127) 143) Brain; Glycine receptor: Receptor autoradiography (Nakayama, M. (127) 103) Bird Starling; Telemetry; Auditory forebrain; Field L; Frequency tuning: Antibody Two-tone interaction; Masking (Nieder, A. (127) 41) Autoimmune; Cochlea; Systemic lupus erythematosus; Stria vascularis (Ruckenstein, M.J. (127) 137) Brain Aging: Glycine receptor; Receptor autoradiography (Nakayama, M. (127) Auditory 103) Chick; Basilar papilla; Stereocilia motion: Hair cell; Tip link (Eisen, M.D. (127) 14) cAMP Marginal cell; Stria vascularis; Ion transport; Secondary messenger: Vol- Chick: Stereocilia: Hair cell; Micromechanics (Duncan, R.K. (12 tage clamp (Tu, T.-Y. (127) 149) Cochlea removal; Avian; Nucleus magnocellularis (Edmonds Jr., Chick Auditory; Basilar papilla: Stereocilia motion; Hair cell; Tip link (Eisen, (127) 62) M.D. (127) 14) Temporal resolution; Recovery: Forward masking: Human (Walton, J. Auditory; Stereocilia; Hair cell; Micromechanics (Duncan, R.K. (127) 22) (127) 86) Chinchilla Auditory forebrain Distortion product; Otoacoustic emission; Noise-induced hearing loss Bird; Starling: Telemetry: Field L; Frequency tuning; Two-tone interac- (Clock Eddins, A. (127) 119) tion; Masking (Nieder, A. (127) 41) Cochlea Auditory nerve Guanylyl cyclase: Inner ear; Vestibulum; Endolymph (Seebacher, T. (127) Cochlear implant; Stochastic resonance; Electrical stimulation; Simula- 95) tion (Rubinstein, J.T. (127) 108) Noise-induced hearing loss; Sound conditioning; Acoustic trauma; Audi- Auditory thalamus tory toughening; Guinea pig (Yamasoba, T. (127) 31) Frequency analysis: Membrane property (Tennigkeit, F Autoimmune; Systemic lupus erythematosus; Antibody; Stria vascularis Auditory toughening (Ruckenstein, M.J. (127) 137) Noise-induced hearing loss; Sound conditioning; Acoustic trauma; Gui- nea pig: Cochlea (Yamasoba, T. (127) 31) Auditory; Avian; Nucleus magnocellularis (Edmonds Jr., J.L. (127) 62) Subject Index Volume 12 Cochlear blood flow Adenosine; Adenosine 5’-triphosphate; Guinea pig cochlea; Laser Dop- Auditory; Chick; Basilar papilla; Stereocilia motion: pler flowmetry; PI receptor; Pl receptor antagonist; P2 receptor; P2 M.D. (127) 14) receptor antagonist; Perilymph; Purine; Spiral ligament; Stria vascularis; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) Auditory; Chick: Stereocilia: Micromechanics (Duncan, Cochlear implant Huggins Stochastic resonance; Electrical stimulation; Simulation; Auditory nerve Binaural; Dichotic; Pitch (Culling, J.F. (127) 143) (Rubinstein, J.T. (127) 108) Human Development Auditory brainstem response; Temporal resolution; Recovery: Basilar membrane; Organ of Corti; Hair cell; Tunnel of Corti (Sato, M masking (Walton, J. (127) 86) (127) 1) Inner ear Dichotic Guanylyl cyclase; Cochlea; Vestibulum; Endolymph (Seebacher Binaural; Pitch; Huggins (Culling, J.F. (127) 143) 95) Distortion product lon transport Otoacoustic emission; Noise-induced hearing loss; Chinchilla (Clock Ed- cAMP; Marginal cell; Stria vascularis; Secondary messenger: Voltage dins, A. (127) 119) clamp (Tu, T.-Y. (127) 149) Spontaneous otoacoustic emission; Normal-hearing human (Ozturan, O. Laser Doppler flowmetry (127) 129) Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig cochlea; PI receptor; Pl receptor antagonist; P2 receptor; P2 receptor Electrical stimulation antagonist; Perilymph; Purine; Spiral ligament: Stria vascularis: Uridine Cochlear implant; Stochastic resonance; Simulation; Auditory nerve (Ru- 5’-triphosphate (Munoz, D.J.B. (127) 55) binstein, J.T. (127) 108) Marginal cell Endolymph cAMP; Stria vascularis; lon transport; Secondary messenger; Voltage Guanylyl cyclase; Inner ear; Cochlea; Vestibulum (Seebacher, T. (127) 95) clamp (Tu, T.-Y. (127) 149) Field L Masking Bird; Starling; Telemetry; Auditory forebrain; Frequency tuning: Two- Bird; Starling; Telemetry; Auditory forebrain; Field L; Frequency tun- tone interaction; Masking (Nieder, A. (127) 41) ing: Two-tone interaction (Nieder, A. (127) 41) Forward masking Membrane property Auditory brainstem response; Temporal resolution; Recovery; Human Auditorv thalamus; Frequency analysis (Tennigkeit, f (Walton, J. (127) 86) Micromechanics Frequency analysis Auditory; Chick; Stereocilia; Hair cell (Duncan, R.K. (127) 22) Auditory thalamus; Membrane property (Tennigk Noise-induced hearing loss Frequency tuning Sound conditioning; Acoustic trauma; Auditory toughening; Guinea pig; Bird; Starling; Telemetry; Auditory forebrain; Field L: Two-tone inter- Cochlea (Yamasoba, T. (127) 31) action; Masking (Nieder, A. (127) 41) Distortion product; Otoacoustic emission; Chinchilla (Clock Eddins, A Glycine receptor (127) 119) Aging; Brain; Receptor autoradiography (Nakayama, M. (127) 103) Normal-hearing human Guanylyl cyclase Spontaneous otoacoustic emission; Distortion product otoacoustic emis- Inner ear; Cochlea; Vestibulum; Endolymph (Seebacher, T. (127) 95) sion (Ozturan, O. (127) 129) Guinea pig Nucleus magnocellularis Noise-induced hearing loss; Sound conditioning; Acoustic trauma; Audi- Auditory; Cochlea removal; Avian (Edmonds Jr., J.L. (127) 62) tory toughening: Cochlea (Yamasoba, T. (127) 31) Organ of Corti Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Laser Dop- Basilar membrane; Development: Hair cell; Tunnel of Corti (Sato, M pler flowmetry; Pl receptor; Pl receptor antagonist; P2 receptor; P2 (127) 1) receptor antagonist; Perilymph; Purine; Spiral ligament; Stria vascularis; Uridine 5’-triphosphate (Munoz, D.J.B. (127 Otoacoustic emission Distortion product; Noise-induced hearing loss; Chinchilla (Clock Eddins, Hair cell A. (127) 119) Basilar membrane; Development; Organ of Corti; Tunnel of Corti (Sato, M. (127) 1) PI receptor Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig cochlea; Laser Doppler flowmetry; PI receptor antagonist; P2 receptor; Subject Index Volume 127 P2 receptor antagonist; Perilymph: Purine; Spiral ligament: Stria vascu- Starling laris; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) Bird; Telemetry; Auditory forebrain; Field L: Frequency tuning: Two- tone interaction: Masking (Nieder, A. (127) 41) Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig cochlea; Laser Doppler flowmetry; P! receptor; P2 receptor: P2 receptor Stereocilia antagonist; Perilymph; Purine: Spiral ligament; Stria vascularis; Uridine Auditory; Chick; Hair cell; Micromechanics (Duncan, R.K. (127) 22) 5’-triphosphate (Munoz, D.J.B. (127) 55) Auditory; Chick; Basilar papilla; Hair cell; Tip link (Eisen, M.D. (127) P2 receptor 14) Adenosine: Adenosine 5’-triphosphate: Cochlear blood flow: Guinea pig cochlea; Laser Doppler flowmetry; Pl receptor; Pl receptor antagonist: Stochastic resonance P2 receptor antagonist; Perilymph: Purine; Spiral ligament: Stria vascu- Cochlear implant; Electrical stimulation; Simulation; Auditory nerve (Ru- laris; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) binstein, J.T. (127) 108) Adenosine: Adenosine 5’-triphosphate: Cochlear blood flow; Guinea pig Stria vascularis cochlea; Laser Doppler flowmetry: P1 receptor; Pl receptor antagonist: Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig P2 receptor; Perilymph: Purine: Spiral ligament; Stria vascularis: Uridine cochlea; Laser Doppler flowmetry; P1 receptor; Pl receptor antagonist: 5'-triphosphate (Munoz, D.J.B. (127) 55) P2 receptor; P2 receptor antagonist; Perilymph: Purine; Spiral ligament: Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) Perilymph Adenosine: Adenosine 5’-triphosphate: Cochlear blood flow; Guinea pig Autoimmune: Cochlea: Systemic lupus erythematosus; Antibody (Ruck- cochlea; Laser Doppler flowmetry; Pl] receptor; Pl receptor antagonist: enstein, M.J. (127) 137) P2 receptor; P2 receptor antagonist; Purine: Spiral ligament: Stria vascu- laris; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) cAMP; Marginal cell; Ion transport; Secondary messenger; Voltage clamp (Tu, T.-Y. (127) 149) Pitch Binaural: Dichotic; Huggins (Culling, J.F. (127) 143) Systemic lupus erythematosus Autoimmune; Cochlea; Antibody; Stria vascularis (Ruckenstein, M.J Purine (127) 137) Adenosine; Adenosine 5'-triphosphate: Cochlear blood flow; Guinea pig cochlea; Laser Doppler flowmetry; Pl] receptor; Pl receptor antagonist: Telemetry P2 receptor; P2 receptor antagonist: Perilymph; Spiral ligament; Stria Bird; Starling; Auditory forebrain; Field L: Frequency tuning: Two-tone vascularis; Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) interaction; Masking (Nieder, A. (127) 41) Receptor autoradiography Temporal resolution Aging: Brain; Glycine receptor (Nakayama, M. (127) 103) Auditory brainstem response; Recovery; Forward masking; Human (Wal- ton, J. (127) 86) Recovery Auditory brainstem response; Temporal resolution: Forward masking: lip link Human (Walton, J. (127) 86) Auditory; Chick: Basilar papilla; Stereocilia motion; Hair cell (Eisen, M.D. (127) 14) Secondary messenger cAMP; Marginal cell; Stria vascularis; lon transport; Voltage clamp (Tu. Tunnel of Corti T.-Y. (127) 149) Basilar membrane: Development; Organ of Corti: Hair cell (Sato, M. (127) 1) Simulation Cochlear implant: Stochastic resonance: Electrical stimulation: Auditory Two-tone interaction nerve (Rubinstein, J.T. (127) 108) Bird; Starling; Telemetry; Auditory forebrain; Field L; Frequency tun- ing: Masking (Nieder, A. (127) 41) Sound conditioning Noise-induced hearing loss; Acoustic trauma; Auditory toughening; Gui- Uridine 5'-triphosphate nea pig: Cochlea (Yamasoba, T. (127) 31) Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig cochlea: Laser Doppler flowmetry: Pl receptor; Pl receptor antagonist; Spiral ligament P2 receptor; P2 receptor antagonist; Perilymph; Purine; Spiral ligament: Adenosine; Adenosine 5’-triphosphate; Cochlear blood flow; Guinea pig Stria vascularis (Munoz, D.J.B. (127) 55) cochlea; Laser Doppler flowmetry; PI receptor: Pl receptor antagonist: P2 receptor: P2 receptor antagonist; Perilymph; Purine: Stria vascularis: Vestibulum Uridine 5’-triphosphate (Munoz, D.J.B. (127) 55) Guanylyl cyclase; Inner ear; Cochlea: Endolymph (Seebacher, T. (127) 95) Spontaneous otoacoustic emission Distortion product otoacoustic emission; Normal-hearing human (Oztur- Voltage clamp an, O. (127) 129) cAMP; Marginal cell: Stria vascularis: lon transport; Secondary messen- ger (Tu, T.-Y. (127) 149)

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Most books are stored in the elastic cloud where traffic is expensive. For this reason, we have a limit on daily download.