Tuning the cochlea: wave-mediated positive feedback between cells

dc.contributor.authorBell, James Andrew
dc.date.accessioned2015-12-10T22:30:26Z
dc.date.issued2007
dc.date.updated2015-12-09T10:01:45Z
dc.description.abstractFrequency analysis by the mammalian cochlea is traditionally thought to occur via a hydrodynamically coupled 'travelling wave' along the basilar membrane. A persistent difficulty with this picture is how sharp tuning can emerge. This paper proposes, and models, a supplementary or alternative mechanism: it supposes that the cochlea analyses sound by setting up standing waves between parallel rows of outer hair cells. In this scheme, multiple cells mutually interact through positive feedback of wave-borne energy. Analytical modelling and numerical evaluation presented here demonstrate that this can provide narrow-band frequency analysis. Graded cochlear tuning will then rely on the distance between rows becoming greater as distance from the base increases (as exhibited by the actual cochlea) and on the wave's phase velocity becoming slower. In effect, tuning is now a case of varying the feedback delay between the rows, and a prime candidate for a wave exhibiting suitably graded phase velocity-a short-wavelength 'squirting wave'-is identified and used in the modelling. In this way, resonance between rows could supply both amplification and high Q, characteristics underlying the 'cochlear amplifier'-the device whose action has long been evident to auditory science but whose anatomical basis and mode of operation are still obscure.
dc.identifier.issn0340-1200
dc.identifier.urihttp://hdl.handle.net/1885/55092
dc.publisherSpringer
dc.sourceBiological Cybernetics
dc.subjectKeywords: Cybernetics; Hydrodynamics; Numerical analysis; Phase velocity; Wavelength; Cochlear amplifier; Frequency analysis; Graded phase velocity; Cells; Mammalia; animal; article; auditory stimulation; basilar membrane; biological model; cell communication; coch
dc.titleTuning the cochlea: wave-mediated positive feedback between cells
dc.typeJournal article
local.bibliographicCitation.lastpage438
local.bibliographicCitation.startpage421
local.contributor.affiliationBell, James Andrew, College of Medicine, Biology and Environment, ANU
local.contributor.authoremailu1577156@anu.edu.au
local.contributor.authoruidBell, James Andrew, u1577156
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor110906 - Sensory Systems
local.identifier.ariespublicationu9204316xPUB318
local.identifier.citationvolume96
local.identifier.doi10.1007/s00422-006-0134-0
local.identifier.scopusID2-s2.0-33846491958
local.identifier.uidSubmittedByu9204316
local.type.statusPublished Version

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