Literature DB >> 10512225

MR evaluation of vestibulocochlear anomalies associated with large endolymphatic duct and sac.

H C Davidson1, H R Harnsberger, M M Lemmerling, A A Mancuso, D K White, K A Tong, R T Dahlen, C Shelton.   

Abstract

BACKGROUND AND
PURPOSE: Large endolymphatic duct and sac (LEDS) is one of the most common anomalies seen in patients with congenital sensorineural hearing loss (SNHL), and is known to occur with other inner ear findings. Our purpose was to use high-resolution T2-weighted fast spin-echo (FSE) MR imaging to describe the features and prevalence of specific anomalies that occur in association with LEDS.
METHODS: We retrospectively reviewed MR images of the inner ear obtained in 63 patients with LEDS and in 60 control subjects. We evaluated each image for features of cochlear and vestibular dysplasia, including deficiency of the cochlear modiolus, gross cochlear dysmorphism, asymmetry of the cochlear scalar chambers, enlargement of the membranous vestibule, gross vestibular dysmorphism, and abnormality of the semicircular canals (SCC).
RESULTS: Cochlear anomalies were present in 76% of ears with LEDS. Modiolar deficiency, gross dysmorphism, and scalar asymmetry were seen in 94%, 71%, and 65% of abnormal cochleas, respectively. Vestibular abnormalities were present in 40% of ears with LEDS. Simple enlargement, gross dysmorphism, and distortion of the lateral SCC were seen in 84%, 16%, and 32% of abnormal vestibules, respectively.
CONCLUSION: Coexistent cochlear anomalies, vestibular anomalies, or both are present in most ears with LEDS, and appear as a spectrum of lesions, ranging from subtle dymorphism to overt dysplasia. The presence of coexistent anomalies in LEDS affects treatment decisions and prognosis. Newer techniques of high-resolution FSE MR imaging provide a means of exquisite characterization of LEDS, as well as more sensitive detection of associated vestibulocochlear anomalies.

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Mesh:

Year:  1999        PMID: 10512225      PMCID: PMC7657744     

Source DB:  PubMed          Journal:  AJNR Am J Neuroradiol        ISSN: 0195-6108            Impact factor:   3.825


  19 in total

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Authors:  M F Mafee; D Charletta; A Kumar; H Belmont
Journal:  AJNR Am J Neuroradiol       Date:  1992 Mar-Apr       Impact factor: 3.825

2.  Normal modiolus: CT appearance in patients with a large vestibular aqueduct.

Authors:  M M Lemmerling; A A Mancuso; P J Antonelli; P S Kubilis
Journal:  Radiology       Date:  1997-07       Impact factor: 11.105

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Authors:  G E Valvassori
Journal:  Otolaryngol Clin North Am       Date:  1983-02       Impact factor: 3.346

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Journal:  Arch Otorhinolaryngol       Date:  1985

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Journal:  Am J Otol       Date:  1997-01

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Authors:  K A Tong; H R Harnsberger; R T Dahlen; J C Carey; K Ward
Journal:  AJR Am J Roentgenol       Date:  1997-04       Impact factor: 3.959

7.  The vestibular aqueduct in congenital deafness: evaluation by the axial projection.

Authors:  T S Becker; J Vignaud; A Sultan; M Lachman
Journal:  Radiology       Date:  1983-12       Impact factor: 11.105

8.  The vestibular aqueduct syndrome: computed tomographic appearance.

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Journal:  Clin Radiol       Date:  1985-05       Impact factor: 2.350

Review 9.  The large vestibular aqueduct syndrome in children. A review of 12 cases and the description of a new clinical entity.

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Journal:  Arch Otolaryngol Head Neck Surg       Date:  1989-01

10.  Advanced techniques in magnetic resonance imaging in the evaluation of the large endolymphatic duct and sac syndrome.

Authors:  H R Harnsberger; R T Dahlen; C Shelton; S D Gray; J L Parkin
Journal:  Laryngoscope       Date:  1995-10       Impact factor: 3.325

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  15 in total

1.  Measurement for Detection of Incomplete Partition Type II Anomalies on MR Imaging.

Authors:  K L Reinshagen; H D Curtin; A M Quesnel; A F Juliano
Journal:  AJNR Am J Neuroradiol       Date:  2017-08-03       Impact factor: 3.825

2.  Large endolymphatic sac anomaly.

Authors:  Karl Muchantef; Ajay Malhotra
Journal:  Pediatr Radiol       Date:  2010-03-23

3.  [Large endolymphatic duct and sac syndrome (LEDS) : part I: analysis of imaging findings].

Authors:  S Bartel-Friedrich; B Amaya; C Rasinski; M Fuchs; S Kösling
Journal:  HNO       Date:  2008-02       Impact factor: 1.284

4.  Molecular (SNP) analyses of overlapping hemizygous deletions of 10q25.3 to 10qter in four patients: evidence for HMX2 and HMX3 as candidate genes in hearing and vestibular function.

Authors:  Nathaniel D Miller; Melonie A Nance; Elizabeth S Wohler; Julie E Hoover-Fong; Emily Lisi; George H Thomas; Jonathan Pevsner
Journal:  Am J Med Genet A       Date:  2009-02-15       Impact factor: 2.802

Review 5.  Vertigo and hearing loss.

Authors:  F J Wippold; P A Turski
Journal:  AJNR Am J Neuroradiol       Date:  2009-09       Impact factor: 3.825

6.  Auditory Detection Thresholds and Cochlear Resistivity Differ Between Pediatric Cochlear Implant Listeners With Enlarged Vestibular Aqueduct and Those With Connexin-26 Mutations.

Authors:  Kelly N Jahn; Molly D Bergan; Julie G Arenberg
Journal:  Am J Audiol       Date:  2020-01-14       Impact factor: 1.493

7.  Vestibular Aqueduct Measurements in the 45° Oblique (Pöschl) Plane.

Authors:  A F Juliano; E Y Ting; V Mingkwansook; L M Hamberg; H D Curtin
Journal:  AJNR Am J Neuroradiol       Date:  2016-03-24       Impact factor: 3.825

8.  Imaging findings of cochlear nerve deficiency.

Authors:  Christine M Glastonbury; H Christian Davidson; H Ric Harnsberger; John Butler; Thomas R Kertesz; Clough Shelton
Journal:  AJNR Am J Neuroradiol       Date:  2002-04       Impact factor: 3.825

9.  Enlarged vestibular aqueduct in pediatric sensorineural hearing loss.

Authors:  Karuna Dewan; Franz J Wippold; Judith E C Lieu
Journal:  Otolaryngol Head Neck Surg       Date:  2009-04       Impact factor: 3.497

10.  When is the vestibular aqueduct enlarged? A statistical analysis of the normative distribution of vestibular aqueduct size.

Authors:  S Vijayasekaran; M J Halsted; M Boston; J Meinzen-Derr; D M E Bardo; J Greinwald; C Benton
Journal:  AJNR Am J Neuroradiol       Date:  2007 Jun-Jul       Impact factor: 3.825

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