Objective: To quantify binaural advantage for auditory localization in the horizontal plane by bilateral cochlear implant (CI) recipients. Also, to determine whether the use of dual microphones with one implant improves localization.
Methods: Twenty subjects from the UK multicenter trial of bilateral cochlear implantation with Nucleus 24 K/M device were recruited. Sound localization was assessed in an anechoic room with an 11-loudspeaker array under four test conditions: right CI, left CI, binaural CI, and dual microphone. Two runs were undertaken for each of five stimuli (speech, tones, noise, transients, and reverberant speech). Order of conditions was counterbalanced across subjects.
Results: Mean localization error with bilateral implants was 24 degrees compared with 67 degrees for monaural implant and dual microphone conditions (chance performance is 65 degrees). Normal controls average 2 to 3 degrees in similar conditions. Binaural performance was significantly better than monaural performance for all subjects, for all stimulus types, and for different sound sources. Only small differences in performance with different stimuli were observed.
Conclusions: Bilateral cochlear implantation with the Nucleus 24 device provides marked improvement in horizontal plane localization abilities compared with unilateral CI use for a range of stimuli having different spectral and temporal characteristics. Benefit was obtained by all subjects, for all stimulus types, and for all sound directions. However, binaural performance was still worse than that obtained by normal hearing listeners and hearing aid users with the same methodology. Monaural localization performance was at chance. There is no benefit for localization with dual microphones.
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http://dx.doi.org/10.1097/01.mao.0000185073.81070.07 | DOI Listing |
J Clin Med
December 2024
Department of Otorhinolaryngology, Head and Neck Surgery, Bhaarath Medical College, Chennai 600073, Tamil Nadu, India.
The misuse of personalized listening devices (PLDs) resulting in noise-induced hearing loss (NIHL) has become a public health concern, especially among youths, including medical students. The occupational use of PLDs that produce high-intensity sounds amplifies the danger of cochlear deterioration and high-frequency NIHL especially when used in noisy environments. This study aims to evaluate the incidence and trends of NIHL among medical students using PLDs.
View Article and Find Full Text PDFJ Speech Lang Hear Res
January 2025
Department of Communication Sciences and Disorders, Baylor University, Waco, TX.
Purpose: The aim of this study was to measure the effects of frequency spacing (i.e., F2 minus F1) on spectral integration for vowel perception in simulated bilateral electric-acoustic stimulation (BiEAS), electric-acoustic stimulation (EAS), and bimodal hearing.
View Article and Find Full Text PDFCommun Med (Lond)
January 2025
MED-EL Elektromedizinische Geräte GmbH, Fürstenweg 77a, 6020, Innsbruck, Austria.
Background: Cochlear implants (CIs) are neuroprosthetic devices which restore hearing in severe-to-profound hearing loss through electrical stimulation of the auditory nerve. Current CIs use an externally worn audio processor. A long-term goal in the field has been to develop a device in which all components are contained within a single implant.
View Article and Find Full Text PDFLaryngoscope
January 2025
Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, U.S.A.
Objective: Peripheral bilateral vestibular hypofunction (BVH) is a rare condition that is well-studied in the adult population, whereas characterization in children has been limited. We report a pediatric cohort of patients with BVH at a multidisciplinary, tertiary care pediatric vestibular clinic.
Methods: A record review of 832 patients with balance-related complaints in our center was conducted.
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