Literature DB >> 9165342

Anatomy of the normal human cochlear aqueduct with functional implications.

Q Gopen1, J J Rosowski, S N Merchant.   

Abstract

There is great variation in published descriptions of the shape, size, and patency of the human cochlear aqueduct. The first part of this paper describes the anatomy of the normal human cochlear aqueduct as determined from a study of 101 temporal bones. Nineteen bones aged 0-1 years and approximately 10 bones per decade of life until age 100 years were examined. The aqueduct was found to have a funnel shaped aperture at the cranial end with a dural sheath extending into it for a varying distance. The rest of the aqueduct was filled with a meshwork of loose connective tissue, often with a central lumen within it. Four types of patencies were noted: central lumen patent throughout length of aqueduct (34%), lumen filled with loose connective tissue (59%), lumen occluded by bone (4%), and obliteration of the aqueduct (3%). The mean value (+/- SD) of the narrowest portion was 138 (+/- 58) microns which occurred 200-300 microns from the cochlear end of the aqueduct. There was no correlation between age and narrowest diameter, or between age and category of patency. In the second part of this paper, we propose quantitative models of aqueduct function, based on measurements of ductal dimensions and known acoustical properties of the inner ear. Our model analyses suggest that in normal ears, the aqueduct (1) cannot support fluid flows large enough to explain stapedectomy gushers, (2) does filter out cardiac- and respiration-induced pulses in CSF and prevents them from affecting cochlear function, and (3) has little effect on normal ossicular transmission of sound for frequencies above 20 Hz. In pathological ears, such as those with ossicular disruption or after a type IV tympanoplasty, a patent aqueduct might affect hearing for frequencies below 150 Hz.

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Year:  1997        PMID: 9165342     DOI: 10.1016/s0378-5955(97)00017-8

Source DB:  PubMed          Journal:  Hear Res        ISSN: 0378-5955            Impact factor:   3.208


  44 in total

1.  Anatomy of the round window and hook region of the cochlea with implications for cochlear implantation and other endocochlear surgical procedures.

Authors:  Peter M M C Li; Haobing Wang; Clarinda Northrop; Saumil N Merchant; Joseph B Nadol
Journal:  Otol Neurotol       Date:  2007-08       Impact factor: 2.311

Review 2.  Conductive hearing loss caused by third-window lesions of the inner ear.

Authors:  Saumil N Merchant; John J Rosowski
Journal:  Otol Neurotol       Date:  2008-04       Impact factor: 2.311

3.  Intracochlear Drug Injections through the Round Window Membrane: Measures to Improve Drug Retention.

Authors:  Stefan K Plontke; Jared J Hartsock; Ruth M Gill; Alec N Salt
Journal:  Audiol Neurootol       Date:  2016-02-24       Impact factor: 1.854

4.  Enlargement of the cochlear aqueduct: does it exist?

Authors:  Herbert Stimmer
Journal:  Eur Arch Otorhinolaryngol       Date:  2011-02-22       Impact factor: 2.503

5.  Inertial bone conduction: symmetric and anti-symmetric components.

Authors:  Namkeun Kim; Kenji Homma; Sunil Puria
Journal:  J Assoc Res Otolaryngol       Date:  2011-03-01

6.  Neurologic bases for comorbidity of balance disorders, anxiety disorders and migraine: neurotherapeutic implications.

Authors:  Carey D Balaban; Rolf G Jacob; Joseph M Furman
Journal:  Expert Rev Neurother       Date:  2011-03       Impact factor: 4.618

7.  Decreased vestibular signal intensity on 3D-FIESTA in vestibular schwannomas differentiating from meningiomas.

Authors:  Kazuhiro Ishikawa; Jun Haneda; Kouichirou Okamoto
Journal:  Neuroradiology       Date:  2012-10-16       Impact factor: 2.804

8.  Middle-ear and inner-ear contribution to bone conduction in chinchilla: The development of Carhart's notch.

Authors:  David Chhan; Peter Bowers; Melissa L McKinnon; John J Rosowski
Journal:  Hear Res       Date:  2016-02-24       Impact factor: 3.208

9.  Intracochlear Pressure Transients During Cochlear Implant Electrode Insertion.

Authors:  Nathaniel T Greene; Jameson K Mattingly; Renee M Banakis Hartl; Daniel J Tollin; Stephen P Cass
Journal:  Otol Neurotol       Date:  2016-12       Impact factor: 2.311

Review 10.  Hearing loss in hydrocephalus: a review, with focus on mechanisms.

Authors:  David Satzer; Daniel J Guillaume
Journal:  Neurosurg Rev       Date:  2015-08-18       Impact factor: 3.042

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