The purpose of this study is to show that the performance of the new digital signal processing system is better than the system used in the currently CE marked devices. Speech in narrowband noise and acceptable levels of noise should be improved with the new system, and speech understanding overall should not be negatively affected. There should be no artefacts or unwanted noises caused by the new system.
This is a controlled, double-blinded, comparative clinical evaluation conducted monocentric at the premised of Bernafon AG in Bern, Switzerland. For this study, Bernafon AG will carry out testing with participants with hearing loss to validate the performance of a new digital signal processing (DSP). System testing of the DSP shows an improved signal, yet it must be tested with humans to be sure of an improvement in real-life situations. The current study will compare the new DSP to the one that is used in the Bernafon hearing aids that are CE- marked and currently available on the market. The goal is to determine whether the new DSP is better in real-life situations than the current system. Primary Endpoint: The primary objective is to assess the new DSP system with various hearing losses and levels of amplification. Speech testing will be used to analyse the speech perception of participants. Secondary Endpoint: The secondary objective is to verify the overall performance of the new device. Acceptable noise levels will be measured as well as further speech testing. Questionnaires will be used to measure subjective responses to the performance. Other Endpoints: The subjective performance of an optimized fitting versus a standard fitting and the acceptance of new domes will be measured with questionnaires. Safety Endpoint: The study aims to identify any new risk factors and to ensure the safety of the device with the newly implemented DSP system before releasing it to the market.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
19
The Polaris device is programmed with computer software to match the Hearing loss of the participant.
The Viron Hearing device is programmed with computer software to match the Hearing loss of the participant.
Bernafon AG
Bern, Switzerland
Speech perception with narrowband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among narrowband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the unaided condition.
Time frame: Week 1
Speech perception with narrowband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among narrowband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 2
Speech perception with narrowband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among narrowband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 3
Speech perception with broadband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among broadband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the unaided condition.
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Time frame: Week 1
Speech perception with broadband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among broadband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 2
Speech perception with broadband noise
Speech perception is tested using a standardized speech test that requires subjects to repeat sentences presented among broadband background noise. The test is adaptive with the background noise getting louder or softer so that the subject answers 50% correct. The scores are measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest possible score is -15 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 3
Acceptance of noise
Acceptance of noise is tested using a standardized noise test that requires the subjects to adjust the background noise to the maximum Levels that they can tolerate it and to the Levels at which they can understand speech. It is measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest score possible is -25 dB SNR and the highest is +20 dB SNR. It is measured in the unaided condition.
Time frame: Week 1
Acceptance of noise
Acceptance of noise is tested using a standardized noise test that requires the subjects to adjust the background noise to the maximum Levels that they can tolerate it and to the Levels at which they can understand speech. It is measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest score possible is -25 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 2
Acceptance of noise
Acceptance of noise is tested using a standardized noise test that requires the subjects to adjust the background noise to the maximum Levels that they can tolerate it and to the Levels at which they can understand speech. It is measured in dB SNR (signal-to-noise ratio) and a lower score is better. The lowest score possible is -25 dB SNR and the highest is +20 dB SNR. It is measured in the aided condition with the new device or the current device depending on the randomization.
Time frame: Week 3