Longitudinally propagating traveling waves of the mammalian tectorial membrane
- 16 October 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (42) , 16510-16515
- https://doi.org/10.1073/pnas.0703665104
Abstract
Sound-evoked vibrations transmitted into the mammalian cochlea produce traveling waves that provide the mechanical tuning necessary for spectral decomposition of sound. These traveling waves of motion that have been observed to propagate longitudinally along the basilar membrane (BM) ultimately stimulate the mechano-sensory receptors. The tectorial membrane (TM) plays a key role in this process, but its mechanical function remains unclear. Here we show that the TM supports traveling waves that are an intrinsic feature of its visco-elastic structure. Radial forces applied at audio frequencies (2-20 kHz) to isolated TM segments generate longitudinally propagating waves on the TM with velocities similar to those of the BM traveling wave near its best frequency place. We compute the dynamic shear storage modulus and shear viscosity of the TM from the propagation velocity of the waves and show that segments of the TM from the basal turn are stiffer than apical segments are. Analysis of loading effects of hair bundle stiffness, the limbal attachment of the TM, and viscous damping in the subtectorial space suggests that TM traveling waves can occur in vivo. Our results show the presence of a traveling wave mechanism through the TM that can functionally couple a significant longitudinal extent of the cochlea and may interact with the BM wave to greatly enhance cochlear sensitivity and tuning.Keywords
This publication has 45 references indexed in Scilit:
- Tectorial Membrane Stiffness GradientsBiophysical Journal, 2007
- Sharpened cochlear tuning in a mouse with a genetically modified tectorial membraneNature Neuroscience, 2007
- Measurement of the mechanical properties of isolated tectorial membrane using atomic force microscopyProceedings of the National Academy of Sciences, 2006
- Poroelastic Bulk Properties of the Tectorial Membrane Measured with Osmotic StressBiophysical Journal, 2006
- A deafness mutation isolates a second role for the tectorial membrane in hearingNature Neuroscience, 2005
- Force generation by mammalian hair bundles supports a role in cochlear amplificationNature, 2005
- Targeted disruption of Otog results in deafness and severe imbalanceNature Genetics, 2000
- A Traveling-Wave Amplifier Model of the CochleaScience, 1993
- Cochlear anatomy related to cochlear micromechanics. A reviewThe Journal of the Acoustical Society of America, 1980
- Tectorial Membrane: A Possible Effect on Frequency Analysis in the CochleaScience, 1979