Minimal basilar membrane motion in low-frequency hearing
File(s)PNAS-2016-Warren-E4304-10.pdf (1.45 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Low-frequency hearing is critically important for speech and music perception, but no mechanical measurements have previously been available from inner ears with intact low-frequency parts. These regions of the cochlea may function in ways different from the extensively studied high-frequency regions, where the sensory outer hair cells produce force that greatly increases the sound-evoked vibrations of the basilar membrane. We used laser interferometry in vitro and optical coherence tomography in vivo to study the low-frequency part of the guinea pig cochlea, and found that sound stimulation caused motion of a minimal portion of the basilar membrane. Outside the region of peak movement, an exponential decline in motion amplitude occurred across the basilar membrane. The moving region had different dependence on stimulus frequency than the vibrations measured near the mechanosensitive stereocilia. This behavior differs substantially from the behavior found in the extensively studied high-frequency regions of the cochlea.
Date Issued
2016-07-26
Date Acceptance
2016-06-11
Citation
Proceedings of the National Academy of Sciences of the United States of America, 2016, 113 (30), pp.E4304-E4310
ISSN
1091-6490
Publisher
National Academy of Sciences
Start Page
E4304
End Page
E4310
Journal / Book Title
Proceedings of the National Academy of Sciences of the United States of America
Volume
113
Issue
30
Copyright Statement
Freely available online through the PNAS open access option.
Subjects
Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
hearing
basilar membrane
optical coherence tomography
hair cells
GUINEA-PIG COCHLEA
OUTER HAIR-CELLS
INNER-EAR
TECTORIAL MEMBRANE
NEGATIVE FEEDBACK
ORGAN
AMPLIFICATION
SOUND
STEREOCILIA
MECHANICS
basilar membrane
hair cells
hearing
optical coherence tomography
Acoustic Stimulation
Animals
Basilar Membrane
Guinea Pigs
Hair Cells, Auditory, Outer
Hearing
Interferometry
Motion
Organ of Corti
Sound
Tomography, Optical Coherence
Basilar Membrane
Organ of Corti
Animals
Guinea Pigs
Tomography, Optical Coherence
Acoustic Stimulation
Interferometry
Hearing
Sound
Motion
Hair Cells, Auditory, Outer
Publication Status
Published
Date Publish Online
2016-07-12