Literature DB >> 20165895

Complex stapes motions in human ears.

Jae Hoon Sim1, Michail Chatzimichalis, Michael Lauxmann, Christof Röösli, Albrecht Eiber, Alexander M Huber.   

Abstract

It has been reported that the physiological motion of the stapes in human and several animals in response to acoustic stimulation is mainly piston-like at low frequencies. At higher frequencies, the pattern includes rocking motions around the long and short axes of the footplate in human and animal ears. Measurements of such extended stapes motions are highly sensitive to the exact angulation of the stapes in relation to the measurement devices and to measurement errors. In this study, velocity in a specific direction was measured at multiple points on the footplates of human temporal bones using a Scanning Laser Doppler Vibrometer (SLDV) system, and the elementary components of the stapes motions, which were the piston-like motion and the rocking motions about the short and long axes of the footplate, were calculated from the measurements. The angular position of a laser beam with respect to the stapes and coordinates of the measurement points on the footplate plane were calculated by correlation between the SLDV measurement frame and the footplate-fixed frame, which was obtained from micro-CT images. The ratios of the rocking motions relative to the piston-like motion increased with frequency and reached a maximum around 7 kHz.A novel method for quantitatively assessing measurements of complex stapes motions and error boundaries of the motion components is presented. In the frequency range of 0.5 to 8 kHz, the magnitudes of the piston-like and two rocking motions were larger than estimated values of the corresponding upper error bounds.

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Year:  2010        PMID: 20165895      PMCID: PMC2914244          DOI: 10.1007/s10162-010-0207-6

Source DB:  PubMed          Journal:  J Assoc Res Otolaryngol        ISSN: 1438-7573


  12 in total

1.  Three-dimensional stapes footplate motion in human temporal bones.

Authors:  Naohito Hato; Stefan Stenfelt; Richard L Goode
Journal:  Audiol Neurootol       Date:  2003 May-Jun       Impact factor: 1.854

2.  A three-dimensional nonlinear active cochlear model analyzed by the WKB-numeric method.

Authors:  Kian-Meng Lim; Charles R Steele
Journal:  Hear Res       Date:  2002-08       Impact factor: 3.208

3.  Scala vestibuli pressure and three-dimensional stapes velocity measured in direct succession in gerbil.

Authors:  W F Decraemer; O de La Rochefoucauld; W Dong; S M Khanna; J J J Dirckx; E S Olson
Journal:  J Acoust Soc Am       Date:  2007-05       Impact factor: 1.840

4.  The effects of complex stapes motion on the response of the cochlea.

Authors:  Alexander M Huber; Damien Sequeira; Christian Breuninger; Albrecht Eiber
Journal:  Otol Neurotol       Date:  2008-12       Impact factor: 2.311

5.  Simultaneous measurements of ossicular velocity and intracochlear pressure leading to the cochlear input impedance in gerbil.

Authors:  O de la Rochefoucauld; W F Decraemer; S M Khanna; E S Olson
Journal:  J Assoc Res Otolaryngol       Date:  2008-05-06

6.  A human temporal bone study of stapes footplate movement.

Authors:  K E Heiland; R L Goode; M Asai; A M Huber
Journal:  Am J Otol       Date:  1999-01

7.  Intraoperative assessment of stapes movement.

Authors:  A Huber; T Linder; M Ferrazzini; S Schmid; N Dillier; S Stoeckli; U Fisch
Journal:  Ann Otol Rhinol Laryngol       Date:  2001-01       Impact factor: 1.547

8.  Finite element micromechanical modeling of the cochlea in three dimensions.

Authors:  P J Kolston; J F Ashmore
Journal:  J Acoust Soc Am       Date:  1996-01       Impact factor: 1.840

9.  Middle-ear characteristics of anesthetized cats.

Authors:  J J Guinan; W T Peake
Journal:  J Acoust Soc Am       Date:  1967-05       Impact factor: 1.840

10.  Soft tissue morphometry of the malleus-incus complex from micro-CT imaging.

Authors:  Jae Hoon Sim; Sunil Puria
Journal:  J Assoc Res Otolaryngol       Date:  2008-03-03
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  13 in total

1.  Elastic Properties of the Annular Ligament of the Human Stapes--AFM Measurement.

Authors:  Monika Kwacz; Zygmunt Rymuza; Marcin Michałowski; Jarosław Wysocki
Journal:  J Assoc Res Otolaryngol       Date:  2015-06-04

2.  [Vibration properties of the ossicle and cochlea and their importance for our hearing system].

Authors:  A M Huber; A Eiber
Journal:  HNO       Date:  2011-03       Impact factor: 1.284

3.  Middle-Ear Sound Transmission Under Normal, Damaged, Repaired, and Reconstructed Conditions.

Authors:  Wei Dong; Ying Tian; Xin Gao; Timothy T K Jung
Journal:  Otol Neurotol       Date:  2017-04       Impact factor: 2.311

4.  Performance of the round window soft coupler for the backward stimulation of the cochlea in a temporal bone model.

Authors:  Antoniu-Oreste Gostian; David Schwarz; Philipp Mandt; Andreas Anagiotos; Magdalene Ortmann; David Pazen; Dirk Beutner; Karl-Bernd Hüttenbrink
Journal:  Eur Arch Otorhinolaryngol       Date:  2016-03-28       Impact factor: 2.503

Review 5.  Békésy's contributions to our present understanding of sound conduction to the inner ear.

Authors:  Sunil Puria; John J Rosowski
Journal:  Hear Res       Date:  2012-05-19       Impact factor: 3.208

6.  A lumped-element model of the chinchilla middle ear.

Authors:  Peter Bowers; John J Rosowski
Journal:  J Acoust Soc Am       Date:  2019-04       Impact factor: 1.840

7.  Characterization of stapes anatomy: investigation of human and guinea pig.

Authors:  Jae Hoon Sim; Christof Röösli; Michail Chatzimichalis; Albrecht Eiber; Alexander M Huber
Journal:  J Assoc Res Otolaryngol       Date:  2013-01-09

8.  First results of a novel adjustable-length ossicular reconstruction prosthesis in temporal bones.

Authors:  Peter K Gottlieb; Xiping Li; Ashkan Monfared; Nikolas Blevins; Sunil Puria
Journal:  Laryngoscope       Date:  2016-03-12       Impact factor: 3.325

9.  A three-dimensional finite element model of round window membrane vibration before and after stapedotomy surgery.

Authors:  Monika Kwacz; Piotr Marek; Paweł Borkowski; Maciej Mrówka
Journal:  Biomech Model Mechanobiol       Date:  2013-03-05

10.  Impedances of the inner and middle ear estimated from intracochlear sound pressures in normal human temporal bones.

Authors:  Darcy L Frear; Xiying Guan; Christof Stieger; John J Rosowski; Hideko Heidi Nakajima
Journal:  Hear Res       Date:  2018-06-30       Impact factor: 3.208

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