Frequency selectivity without resonance in a fluid waveguide.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 25237137.
- Also identified by DOI 10.1073/pnas.1412412111 and PMC identifier 4209998.
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Abstract
This study analyzes a waveguide consisting of two parallel fluid-filled chambers connected by a narrow slit that is spanned by two coupled elastic beams. A stiffness gradient exists in the longitudinal direction. This simple linear system, which contains no lumped mass, is shown to act as a spectral analyzer. Fluid waves traveling in the waveguide exhibit a distinct amplitude peak at a longitudinal location that varies systematically with frequency. The peaking is not based on resonance, but entirely on wave dispersion. When entering its peak region, the wave undergoes a sharp deceleration associated with a transition in which two propagation modes exchange roles. It is proposed that this mode shape swapping underlies the frequency analysis of the mammalian cochlea.
Medical subject headings
- Algorithms
- Cochlea
- Hearing
- Models, Biological