Acceptance and Fitting of the DUET Device – A Combined Speech Processor for Electric Acoustic Stimulation

Author(s):  
Silke Helbig ◽  
Uwe Baumann
2015 ◽  
Vol 2015 ◽  
pp. 1-4 ◽  
Author(s):  
Dayse Távora-Vieira ◽  
Stuart Miller

People with residual hearing in the low frequencies and profound hearing loss in the high frequencies often do not benefit from acoustic amplification. Focus on this group of patients led to the development of the combined electric-acoustic stimulation (EAS) systems which can provide users with greater speech perception than can cochlear implant (CI) alone or acoustic hearing alone. EAS users wear a combined speech processor that incorporates a behind-the-ear audio processor that sits with an ear hook on the user’s pinna and a hearing aid, which sits in the ear canal. However, with the introduction of single-unit processors, which combine the audio processor, coil, control unit, and battery pack into a single device that sits on the implant site, therefore off the ear, simultaneous electric (CI) and acoustic (hearing aid) stimulation is not currently possible with a combined processor. To achieve EAS with a single-unit processor, a CI user must also wear a hearing aid. This study seeks to determine if experienced users of combined EAS speech processors could also benefit from using a combination of a single-unit speech processor that sits off the ear and an in-the-ear hearing aid.


2014 ◽  
Vol 25 (02) ◽  
pp. 133-140 ◽  
Author(s):  
Margaret T. Dillon ◽  
Emily Buss ◽  
Harold C. Pillsbury ◽  
Oliver F. Adunka ◽  
Craig A. Buchman ◽  
...  

Background: Cochlear implant (CI) recipients with postoperative hearing preservation may utilize an ipsilateral bimodal listening condition known as electric-acoustic stimulation (EAS). Studies on EAS have reported significant improvements in speech perception abilities over CI-alone listening conditions. Adjustments to the hearing aid (HA) settings to match prescription targets routinely used in the programming of conventional amplification may provide additional gains in speech perception abilities. Purpose: Investigate the difference in users’ speech perception scores when listening with the recommended HA settings for EAS patients versus HA settings adjusted to match National Acoustic Laboratories’ nonlinear fitting procedure version 1 (NAL-NL1) targets. Research Design: Prospective analysis of the influence of HA settings. Study Sample: Nine EAS recipients with greater than 12 mo of listening experience with the DUET speech processor. Intervention: Subjects were tested in the EAS listening condition with two different HA setting configurations. Speech perception materials included consonant-nucleus-consonant (CNC) words in quiet, AzBio sentences in 10-talker speech babble at a signal-to-noise ratio (SNR) of +10, and the Bamford-Kowal-Bench sentences in noise (BKB-SIN) test. Data Collection and Analysis: The speech perception performance on each test measure was compared between the two HA configurations. Results: Subjects experienced a significant improvement in speech perception abilities with the HA settings adjusted to match NAL-NL1 targets over the recommended HA settings. Conclusions: EAS subjects have been shown to experience improvements in speech perception abilities when listening to ipsilateral combined stimulation. This population’s abilities may be underestimated with current HA settings. Tailoring the HA output to the patient’s individual hearing loss offers improved outcomes on speech perception measures.


2013 ◽  
Vol 17 (1) ◽  
pp. 3-26 ◽  
Author(s):  
Paola V. Incerti ◽  
Teresa Y. C. Ching ◽  
Robert Cowan

2021 ◽  
Vol 32 (08) ◽  
pp. 521-527
Author(s):  
Yang-Soo Yoon ◽  
George Whitaker ◽  
Yune S. Lee

Abstract Background Cochlear implant technology allows for acoustic and electric stimulations to be combined across ears (bimodal) and within the same ear (electric acoustic stimulation [EAS]). Mechanisms used to integrate speech acoustics may be different between the bimodal and EAS hearing, and the configurations of hearing loss might be an important factor for the integration. Thus, differentiating the effects of different configurations of hearing loss on bimodal or EAS benefit in speech perception (differences in performance with combined acoustic and electric stimulations from a better stimulation alone) is important. Purpose Using acoustic simulation, we determined how consonant recognition was affected by different configurations of hearing loss in bimodal and EAS hearing. Research Design A mixed design was used with one between-subject variable (simulated bimodal group vs. simulated EAS group) and one within-subject variable (acoustic stimulation alone, electric stimulation alone, and combined acoustic and electric stimulations). Study Sample Twenty adult subjects (10 for each group) with normal hearing were recruited. Data Collection and Analysis Consonant perception was unilaterally or bilaterally measured in quiet. For the acoustic stimulation, four different simulations of hearing loss were created by band-pass filtering consonants with a fixed lower cutoff frequency of 100 Hz and each of the four upper cutoff frequencies of 250, 500, 750, and 1,000 Hz. For the electric stimulation, an eight-channel noise vocoder was used to generate a typical spectral mismatch by using fixed input (200–7,000 Hz) and output (1,000–7,000 Hz) frequency ranges. The effects of simulated hearing loss on consonant recognition were compared between the two groups. Results Significant bimodal and EAS benefits occurred regardless of the configurations of hearing loss and hearing technology (bimodal vs. EAS). Place information was better transmitted in EAS hearing than in bimodal hearing. Conclusion These results suggest that configurations of hearing loss are not a significant factor for integrating consonant information between acoustic and electric stimulations. The results also suggest that mechanisms used to integrate consonant information may be similar between bimodal and EAS hearing.


2017 ◽  
Vol 3 (2) ◽  
pp. 119-122
Author(s):  
Wouter J. van Drunen ◽  
Sarra Kacha Lachheb ◽  
Anatoly Glukhovskoy ◽  
Jens Twiefel ◽  
Marc C. Wurz ◽  
...  

AbstractFor patients suffering from profound hearing loss or deafness still having respectable residual hearing in the low frequency range, the combination of a hearing aid with a cochlear implant results in the best quality of hearing perception (EAS – electric acoustic stimulation). In order to optimize EAS, ongoing research focusses on the integration of these stimuli in a single implant device. Within this study, the performance of piezoelectric actuators, particularly the dual actuator stimulation, in a scaled uncoiled test rig was investigated.


2020 ◽  
Vol 47 (2) ◽  
pp. 198-202
Author(s):  
Kazuya Saito ◽  
Takeshi Fujita ◽  
Yasuhiro Osaki ◽  
Hajime Koyama ◽  
Ko Shiraishi ◽  
...  

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