Electromotile hearing: Evidence from basilar membrane motion and otoacoustic emissions

被引:67
作者
Nuttall, AL [1 ]
Ren, TY [1 ]
机构
[1] XIAN MED UNIV,DEPT OTOLARYNGOL,XIAN 710061,PEOPLES R CHINA
关键词
cochlear electric stimulation; basilar membrane vibration; laser Doppler velocimeter; electrophonic hearing; outer hair cell electromotility; guinea;
D O I
10.1016/0378-5955(95)00216-2
中图分类号
R36 [病理学]; R76 [耳鼻咽喉科学];
学科分类号
100104 ; 100213 ;
摘要
Electrical stimulation of the cochlea is known to cause auditory sensations in humans and other animals. It also has been shown to produce emissions of sound from the inner ear. In the current study we investigate the relationship between electrically induced motion of the basilar membrane (BM) and the production of otoacoustic emissions. We test the hypothesis that electrical current-induced movements of the outer hair cell (OHC electromotility) result in intracochlear acoustic pressure which causes traveling waves on the BM. Our results demonstrate that the dominant response of the guinea pig inner ear to electric stimulation, at the round window membrane (RW) or across the cochlear duct, is a mechanical response of the organ of Corti. We observed that electrical stimulation of the cochlea produced traveling wave activity on the BM, measured with a laser Doppler velocimeter. The BM motion was accompanied by sound emitted by the cochlea for frequencies up to at least 25 kHz. Furthermore, bipolar rectangular current stimulation produced steady, bipolar displacements of the BM (to 2 nm), indicating functional elongation or contraction of OHCs occurs depending on the polarity of the current pulse. All of the evoked responses were absent after drug treatments eliminated the OHCs. Our data indicate that OHCs undergo electrically evoked displacements capable of producing high-fidelity, high-frequency acoustic energy. The electrically evoked intracochlear energy results in conventional traveling waves within the cochlea, as well as emissions of sound from the cochlea. These data provide direct support for a mechanism of cochlear sensitivity and tuning involving high-frequency OHC electromotility. Moreover, the data also indicate that any intra- or extracochlear electric current which affects the electric polarization of OHCs could induce BM traveling waves and cause 'electromotile hearing'. This form of hearing would be one component under the more general definition of the electrophonic effect.
引用
收藏
页码:170 / 177
页数:8
相关论文
共 37 条
[1]   EVOKED MECHANICAL RESPONSES OF ISOLATED COCHLEAR OUTER HAIR-CELLS [J].
BROWNELL, WE ;
BADER, CR ;
BERTRAND, D ;
DERIBAUPIERRE, Y .
SCIENCE, 1985, 227 (4683) :194-196
[2]   THEORY OF ELECTRICALLY DRIVEN SHAPE CHANGES OF COCHLEAR OUTER HAIR-CELLS [J].
DALLOS, P ;
HALLWORTH, R ;
EVANS, BN .
JOURNAL OF NEUROPHYSIOLOGY, 1993, 70 (01) :299-323
[3]  
DALLOS P, 1992, J NEUROSCI, V12, P4575
[4]   HIGH-FREQUENCY MOTILITY OF OUTER HAIR-CELLS AND THE COCHLEAR AMPLIFIER [J].
DALLOS, P ;
EVANS, BN .
SCIENCE, 1995, 267 (5206) :2006-2009
[5]   HIGH-FREQUENCY OUTER HAIR CELL MOTILITY - CORRECTIONS AND ADDENDUM [J].
DALLOS, P ;
EVANS, BN .
SCIENCE, 1995, 268 (5216) :1420-1421
[6]   AN ACTIVE PROCESS IN COCHLEAR MECHANICS [J].
DAVIS, H .
HEARING RESEARCH, 1983, 9 (01) :79-90
[7]   OUTER HAIR CELL ELECTROMOTILITY - THE SENSITIVITY AND VULNERABILITY OF THE DC COMPONENT [J].
EVANS, BN ;
HALLWORTH, R ;
DALLOS, P .
HEARING RESEARCH, 1991, 52 (02) :288-304
[8]  
FLOTTORP G, 1976, ACTA OTOLARYNGOL S S, V341, P7
[9]  
GERSUNI CV, 1936, J EXP PSYCHOL, V19, P370
[10]   HEARING .2. THE PHYSICAL BASIS OF THE ACTION OF THE COCHLEA [J].
GOLD, T .
PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1948, 135 (881) :492-498