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Cochlear Implantation After Labyrinthectomy or a Translabyrinthine Surgical Approach

Cochlear Implantation After Labyrinthectomy or a Translabyrinthine Surgical Approach

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02309099
Enrollment
10
Registered
2014-12-05
Start date
2014-11-30
Completion date
2017-11-08
Last updated
2019-01-07

For informational purposes only โ€” not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Meniere's Disease, Unilateral Acoustic Neuroma

Keywords

Acoustic Neuroma, Vestibular Schwannoma, Meniere's Disease

Brief summary

The goal of this project is to determine whether subjects who have undergone labyrinthectomy or a translabyrinthine surgical approach as the treatment for vestibular schwannoma or Meniere's disease benefit from cochlear implantation on speech perception and localization tasks. If the auditory nerve is able to transmit this signal effectively, then these two populations may be able to utilize the combination of electric (in the affected ear) and acoustic (in the non-affected ear) information for improved speech perception in noise and localization as reportedly experienced in other unilateral sensorineural hearing loss populations.

Detailed description

The treatment for cases of vestibular schwannoma or Meniere's disease may require a translabyrinthine surgical approach. This surgical approach results in a complete loss of hearing in the surgical ear, leaving the patient with a unilateral hearing loss. Though assistive hearing technologies exist to route signals from the poorer hearing ear to the better hearing ear, affected patients continue to have limitations with localization and speech perception in noise. An alternative hearing device is a cochlear implant, which would provide the signal to the affected ear. This could potentially offer binaural cues, thus improving localization and speech perception in noise. Since the surgical procedures for a translabyrinthine approach parallel those for cochlear implantation, insertion of the cochlear implant could occur within the same surgery. A vestibular schwannoma is a benign tumor on cranial nerve VIII that affects the vestibular and auditory systems. Hearing loss on the side of the vestibular schwannoma may result from degeneration of hair cells and spiral ganglia or growth of the schwannoma into the cochlear space. Treatment options include observation from routine imaging, radiation therapy, or surgical removal of the tumor. Despite treatment for the vestibular schwannoma, auditory sensitivity may be further reduced on the affected side as a result of the radiation therapy or compromises to the inner ear or cranial nerve VIII from surgical removal. Thus, in cases of unilateral vestibular schwannoma the patient is often left with a unilateral profound hearing loss. Patients who are scheduled to undergo labyrinthectomy for intractable Meniere's disease are a second population with resulting unilateral profound hearing loss. These patients typically have non-functional hearing on the affected ear prior to the procedure. The main indication for the surgery is intractable vertigo and thus the loss of already non-functional hearing is typically well accepted. Though hearing on the contralateral ear may be within normal limits, unilateral hearing loss is known to result in reduced speech perception in noise, variable abilities on localization tasks, increased report of hearing handicap, and reduced quality of life. Due to the severity of the hearing loss, these patient populations cannot utilize conventional amplification that would offer auditory input to the affected ear. The current hearing device options for this patient population include contralateral routing of signal (CROS) hearing aids and bone-conduction devices. With a CROS hearing aid, a microphone positioned near the affected ear picks up the signal and sends it to a hearing aid placed on the contralateral ear to present the signal to the unaffected side. Bone-conduction devices transmit the signal from the affected ear to the contralateral ear via transcutaneous vibrations. Though CROS hearing aids and bone-conduction devices provide the patient with auditory information from both sides, the ability to use binaural cues for localization and speech perception in noise is variable. It is of interest as to the potential benefit of cochlear implantation in these populations considering the profound hearing loss resulting from surgical intervention. A cochlear implant is a two-part system, including the internal electrode array and external speech processor. The internal electrode array is surgically implanted into the affected cochlea. The external speech processor receives sounds and transmits this signal to the internal portion. The electrode array presents the signal via electrical pulses within the cochlear space, which is interpreted by the brain as sound. Cochlear implantation has been reported as a viable treatment option in other cases of unilateral hearing loss, including sudden sensorineural hearing loss, and severe tinnitus. Further, cochlear implantation has been shown to offer superior speech perception in noise, localization abilities, and subjective report in cases of unilateral sensorineural hearing loss as compared to CROS hearing aids and bone-conduction devices. There is limited evidence as to the success of cochlear implantation in patients with unilateral profound hearing loss resulting from vestibular schwannoma. One study reported variable speech perception outcomes in five cochlear implant recipients with a history of vestibular schwannoma due to neurofibromatosis type 2 (NF2) or sporadic growth. Limitations of this study are the subjects underwent a range of treatments prior to cochlear implantation and the cases reviewed had profound hearing loss in both ears. A second study reported on a case study of unilateral vestibular schwannoma removal and simultaneous cochlear implantation. This subject reportedly experienced an improvement in speech perception abilities and quality of life postoperatively. Determining the preferred treatment option for patients suffering from unilateral vestibular schwannoma is still needed. Further, there is limited evidence of the preferred treatment option for patients suffering from unilateral profound hearing loss after undergoing a labyrinthectomy for intractable Meniere's disease. One study reported on a patient who underwent bilateral labyrinthectomies for Meniere's disease. They reported an improvement in speech perception abilities and subjective benefit; however, there was a delay between the two surgeries. Allowing for a waiting period between the two surgeries is not ideal as cochlear ossification may occur, limiting the ability to successfully insert the electrode array. Another study also reported successful outcomes from cochlear implantation in subjects with bilateral Meniere's disease. However, there is no published report investigating whether cochlear implantation improves speech perception and/or localization abilities in unilateral cases of Meniere's disease. The goal of this project is to determine whether subjects who have undergone labyrinthectomy or a translabyrinthine surgical approach as the treatment for vestibular schwannoma or Meniere's disease benefit from cochlear implantation on speech perception and localization tasks. If the auditory nerve is able to transmit this signal effectively, then these two populations may be able to utilize the combination of electric (in the affected ear) and acoustic (in the non-affected ear) information for improved speech perception in noise and localization as reportedly experienced in other unilateral sensorineural hearing loss populations.

Interventions

DEVICECochlear Implant

Cochlear implantation used a treatment for single-sided deafness resultant of labyrinthectomy or a translabyrinthine surgical approach

Sponsors

Med-El Corporation
CollaboratorINDUSTRY
University of North Carolina, Chapel Hill
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 99 Years
Healthy volunteers
No

Inclusion criteria

1. Scheduled to undergo a surgical procedure that will result in profound hearing loss in the surgical ear \[unilateral vestibular schwannoma wtih planned translabyrinthine surgery or unilateral Meniere's disease with planned labyrinthectomy\] \[diagnosed by UNC investigators\] 2. Pure-tone average (PTA) less than or equal to 35 decibels Hearing Level (dB HL) in the contralateral ear \[no evidence of retrocochlear dysfunction\] 3. Unaided consonant-nucleus-consonant (CNC) words score greater than or equal to 80% in the contralateral ear 4. Greater than 18 years of age at implantation 5. Realistic expectations 6. Willing to obtain appropriate meningitis vaccinations 7. No reported cognitive issues \[pass the Mini Mental State Examination screener\] 8. Able and willing to comply with study requirements, including travel to investigational site 9. Obtain Centers for Disease Control and Prevention (CDC) recommended meningitis vaccinations prior to surgery

Exclusion criteria

1. History of implantable technology in either ear, such as a bone-conduction implant 2. Non-native English speaker \[speech perception materials presented in English\] 3. Inability to participate in follow-up procedures (unwillingness, geographic location)

Design outcomes

Primary

MeasureTime frameDescription
Change in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over TimeIntervals within the first 12 months of device useParticipants reported frequency of subjective difficulty in specific listening situations. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. The score is percentage of how frequently participants experience difficulty in specific listening situations, ranging from 1% (Never) to 99% (Always). A lower global score is less reported difficulty frequency by the participant.
Change in AzBio Sentences in Noise Scores (S0NContra) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a percentage of words correct. A higher score is better.
Change in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech and noise were colocated in this condition (S0N0). Resultant score is the signal-to-noise ratio in decibels (dB SNR) at which the participant scores 50% of the target words correct. A lower score is better.
Change in BKB-SIN Scores (S0NCI) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is the signal-to-noise ratio at which the participant scores 50% of the target words correct. A lower score is better.
Change in BKB-SIN Scores (S0NContra) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is the signal-to-noise ratio at which the participant scores 50% of the target words correct. A lower score is better.
Change in Localization Root-mean-squared (RMS) Error Over TimeIntervals within the first 12 months of device useParticipants identified a speech-shaped noise source presented at various presentation levels within an 11-speaker array. Participants localized the sound source with the cochlear implant on and contralateral ear open. The RMS error (degrees) was estimated; a lower degree is more accurate/better localization of the sound source.
Change in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over TimeIntervals within the first 12 months of device useParticipants reported subjective device benefit when hearing speech in a variety of competing contexts by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.
Change in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over TimeIntervals within the first 12 months of device useParticipants reported subjective device benefit for the directional, distance, and movement components of spatial hearing by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.
Change in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over TimeIntervals within the first 12 months of device useParticipants reported subjective device benefit in qualities of hearing (including ease of listening and the naturalness, clarity, and identifiability of different sounds) by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.
Change in Consonant-Nucleus-Consonant (CNC) Words Scores Over TimeIntervals within the first 12 months of device useTesting open-set word understanding. Recorded CNC Words lists were presented to the participant while listening to the cochlear implant alone and contralateral ear plugged/masked. Resultant score is a percentage of words correct. A higher score is better.
Change in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with no background noise present. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open. Resultant score is a percentage of words correct. A higher score is better.
Change in AzBio Sentences in Noise Scores (S0N0) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 decibel signal-to-noise ratio (dB SNR). Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech and noise were colocated in this condition (S0N0). Resultant score is a percentage of words correct. A higher score is better.
Change in AzBio Sentences in Noise Scores (S0NCI) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a percentage of words correct. A higher score is better.

Secondary

MeasureTime frameDescription
Difference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were colocated in this condition (S0N0). Resultant score is a difference in the mean percentage of words correct between cochlear implant on versus off; a positive score translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower difference with the cochlear implant on.
Difference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.
Difference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.
Difference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were colocated in this condition (S0N0). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.
Difference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.
Difference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.
Difference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useParticipants identified a speech-shaped noise source presented at various presentation levels within an 11-speaker array. Participants localized the sound source with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone. The RMS error (degrees) was estimated; a lower degree is more accurate/better localization of the sound source. The resultant score reported here is a difference in mean RMS error between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.
Difference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over TimeIntervals within the first 12 months of device useTesting open-set sentence understanding with no background noise present. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were collocated in this condition. Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.

Countries

United States

Participant flow

Recruitment details

Recruitment was completed in medical clinic by surgeon if a patient is identified as a potential participant and has decided to undergo vestibular schwannoma resection via a translabyrinthine surgical approach or a labyrinthectomy for Meniere's disease.

Pre-assignment details

Groups were based on the participants' diagnosis (vestibular schwannoma or Meniere's disease) and subsequent surgery. Participants were initially consented into their specific group.

Participants by arm

ArmCount
Vestibular Schwannoma
Diagnosis of vestibular schwannoma. Within the resection surgery via translabyrinthine surgical approach, cochlear implantation occurred following surgeon's visual confirmation of anatomically intact auditory nerve.
7
Meniere's Disease
Diagnosis of Meniere's disease. During the labyrinthectomy surgery, cochlear implantation was completed following labyrinthectomy.
3
Total10

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyAdverse Event20

Baseline characteristics

CharacteristicMeniere's DiseaseTotalVestibular Schwannoma
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
2 Participants4 Participants2 Participants
Age, Categorical
Between 18 and 65 years
1 Participants6 Participants5 Participants
Race and Ethnicity Not Collectedโ€”0 Participantsโ€”
Region of Enrollment
United States
3 Participants10 Participants7 Participants
Sex: Female, Male
Female
2 Participants6 Participants4 Participants
Sex: Female, Male
Male
1 Participants4 Participants3 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 70 / 3
other
Total, other adverse events
4 / 72 / 3
serious
Total, serious adverse events
2 / 70 / 3

Outcome results

Primary

Change in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time

Testing open-set sentence understanding with no background noise present. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open. Resultant score is a percentage of words correct. A higher score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time1-Month98.6 Percentage of words correct
Vestibular SchwannomaChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time6-Month97.8 Percentage of words correct
Vestibular SchwannomaChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time12-Month99.2 Percentage of words correct
Vestibular SchwannomaChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time3-Month98.8 Percentage of words correct
Meniere's DiseaseChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time12-Month99.5 Percentage of words correct
Meniere's DiseaseChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time1-Month99.7 Percentage of words correct
Meniere's DiseaseChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time3-Month99.3 Percentage of words correct
Meniere's DiseaseChange in Arizona Biomedical Institute (AzBio) Sentences in Quiet Scores Over Time6-Month99.7 Percentage of words correct
Primary

Change in AzBio Sentences in Noise Scores (S0N0) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 decibel signal-to-noise ratio (dB SNR). Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech and noise were colocated in this condition (S0N0). Resultant score is a percentage of words correct. A higher score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0N0) Over Time1-Month33.2 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0N0) Over Time3-Month29.4 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0N0) Over Time6-Month30.2 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0N0) Over Time12-Month42.2 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0N0) Over Time12-Month50.5 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0N0) Over Time1-Month44 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0N0) Over Time6-Month40.3 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0N0) Over Time3-Month41.3 Percentage of words correct
Primary

Change in AzBio Sentences in Noise Scores (S0NCI) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a percentage of words correct. A higher score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NCI) Over Time1-Month76.6 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NCI) Over Time3-Month66.6 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NCI) Over Time6-Month73.4 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NCI) Over Time12-Month71.8 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NCI) Over Time12-Month82.5 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NCI) Over Time1-Month84.7 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NCI) Over Time6-Month83.3 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NCI) Over Time3-Month85 Percentage of words correct
Primary

Change in AzBio Sentences in Noise Scores (S0NContra) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a percentage of words correct. A higher score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NContra) Over Time1-Month21.6 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NContra) Over Time3-Month12 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NContra) Over Time6-Month18 Percentage of words correct
Vestibular SchwannomaChange in AzBio Sentences in Noise Scores (S0NContra) Over Time12-Month25.4 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NContra) Over Time12-Month49 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NContra) Over Time1-Month28 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NContra) Over Time6-Month45 Percentage of words correct
Meniere's DiseaseChange in AzBio Sentences in Noise Scores (S0NContra) Over Time3-Month38 Percentage of words correct
Primary

Change in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech and noise were colocated in this condition (S0N0). Resultant score is the signal-to-noise ratio in decibels (dB SNR) at which the participant scores 50% of the target words correct. A lower score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time1-Month-1.3 dB SNR
Vestibular SchwannomaChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time3-Month-0.9 dB SNR
Vestibular SchwannomaChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time6-Month0.9 dB SNR
Vestibular SchwannomaChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time12-Month-0.9 dB SNR
Meniere's DiseaseChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time12-Month-2 dB SNR
Meniere's DiseaseChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time1-Month-1 dB SNR
Meniere's DiseaseChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time6-Month-1.83 dB SNR
Meniere's DiseaseChange in Bamford-Kowal-Bench-Speech-in-Noise (BKB-SIN) Scores (S0N0) Over Time3-Month-0.5 dB SNR
Primary

Change in BKB-SIN Scores (S0NCI) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is the signal-to-noise ratio at which the participant scores 50% of the target words correct. A lower score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in BKB-SIN Scores (S0NCI) Over Time1-Month-3.5 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NCI) Over Time3-Month-3.4 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NCI) Over Time6-Month-3.3 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NCI) Over Time12-Month-4.4 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NCI) Over Time12-Month-5 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NCI) Over Time1-Month-6 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NCI) Over Time6-Month-5.33 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NCI) Over Time3-Month-5.2 dB SNR
Primary

Change in BKB-SIN Scores (S0NContra) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is the signal-to-noise ratio at which the participant scores 50% of the target words correct. A lower score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in BKB-SIN Scores (S0NContra) Over Time1-Month1.7 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NContra) Over Time3-Month1.8 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NContra) Over Time6-Month2.2 dB SNR
Vestibular SchwannomaChange in BKB-SIN Scores (S0NContra) Over Time12-Month1.2 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NContra) Over Time12-Month-0.25 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NContra) Over Time1-Month-1 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NContra) Over Time6-Month-1.3 dB SNR
Meniere's DiseaseChange in BKB-SIN Scores (S0NContra) Over Time3-Month-2.3 dB SNR
Primary

Change in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time

Testing open-set word understanding. Recorded CNC Words lists were presented to the participant while listening to the cochlear implant alone and contralateral ear plugged/masked. Resultant score is a percentage of words correct. A higher score is better.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time1-Month23.6 Percentage of words correct
Vestibular SchwannomaChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time3-Month18.8 Percentage of words correct
Vestibular SchwannomaChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time6-Month20.4 Percentage of words correct
Vestibular SchwannomaChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time12-Month20.4 Percentage of words correct
Meniere's DiseaseChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time12-Month45 Percentage of words correct
Meniere's DiseaseChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time1-Month22 Percentage of words correct
Meniere's DiseaseChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time6-Month48.7 Percentage of words correct
Meniere's DiseaseChange in Consonant-Nucleus-Consonant (CNC) Words Scores Over Time3-Month42.7 Percentage of words correct
Primary

Change in Localization Root-mean-squared (RMS) Error Over Time

Participants identified a speech-shaped noise source presented at various presentation levels within an 11-speaker array. Participants localized the sound source with the cochlear implant on and contralateral ear open. The RMS error (degrees) was estimated; a lower degree is more accurate/better localization of the sound source.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Localization Root-mean-squared (RMS) Error Over Time6-Month37.5 Degrees
Vestibular SchwannomaChange in Localization Root-mean-squared (RMS) Error Over Time3-Month40.2 Degrees
Vestibular SchwannomaChange in Localization Root-mean-squared (RMS) Error Over Time12-Month36.7 Degrees
Vestibular SchwannomaChange in Localization Root-mean-squared (RMS) Error Over Time1-Month40.5 Degrees
Meniere's DiseaseChange in Localization Root-mean-squared (RMS) Error Over Time12-Month20.3 Degrees
Meniere's DiseaseChange in Localization Root-mean-squared (RMS) Error Over Time3-Month25.7 Degrees
Meniere's DiseaseChange in Localization Root-mean-squared (RMS) Error Over Time6-Month21.5 Degrees
Meniere's DiseaseChange in Localization Root-mean-squared (RMS) Error Over Time1-Month30.7 Degrees
Primary

Change in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time

Participants reported subjective device benefit in qualities of hearing (including ease of listening and the naturalness, clarity, and identifiability of different sounds) by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time1-Month6.4 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time3-Month7.9 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time6-Month6.4 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time12-Month5.4 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time12-Month7.5 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time1-Month5 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time6-Month7.3 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Qualities of Hearing Domain of the SSQ Scale Over Time3-Month7.2 Score on a scale
Primary

Change in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time

Participants reported subjective device benefit for the directional, distance, and movement components of spatial hearing by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time1-Month5.4 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time3-Month6 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time6-Month5.6 Score on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time12-Month5.4 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time12-Month7.5 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time1-Month6.4 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time6-Month7 Score on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Spatial Domain of the SSQ Scale Over Time3-Month7.5 Score on a scale
Primary

Change in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time

Participants reported subjective device benefit when hearing speech in a variety of competing contexts by marking on a visual analog scale from 0 to 10, with 0 being the minimum benefit and 10 being maximal benefit. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. A higher score is greater subjective benefit reported by the participant.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time1-Month6.2 Scores on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time3-Month6.6 Scores on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time6-Month6.8 Scores on a scale
Vestibular SchwannomaChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time12-Month5.4 Scores on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time12-Month7.5 Scores on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time1-Month6.1 Scores on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time6-Month7.1 Scores on a scale
Meniere's DiseaseChange in Reported Subjective Benefit on the Speech Domain of the Speech, Spatial and Qualities of Hearing (SSQ) Scale Over Time3-Month5.8 Scores on a scale
Primary

Change in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time

Participants reported frequency of subjective difficulty in specific listening situations. Participants based their report on daily listening with the cochlear implant on and contralateral ear open. The score is percentage of how frequently participants experience difficulty in specific listening situations, ranging from 1% (Never) to 99% (Always). A lower global score is less reported difficulty frequency by the participant.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time1-Month23.3 Percentage of situations with difficulty
Vestibular SchwannomaChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time3-Month23.3 Percentage of situations with difficulty
Vestibular SchwannomaChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time12-Month20.1 Percentage of situations with difficulty
Vestibular SchwannomaChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time6-Month27.8 Percentage of situations with difficulty
Meniere's DiseaseChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time12-Month16 Percentage of situations with difficulty
Meniere's DiseaseChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time1-Month37.8 Percentage of situations with difficulty
Meniere's DiseaseChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time3-Month25.4 Percentage of situations with difficulty
Meniere's DiseaseChange in Reported Subjective Difficulty Frequency on the Abbreviated Profile of Hearing Aid Benefit (APHAB) Over Time6-Month24.6 Percentage of situations with difficulty
Secondary

Difference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were colocated in this condition (S0N0). Resultant score is a difference in the mean percentage of words correct between cochlear implant on versus off; a positive score translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower difference with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-3.6 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-2.6 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-6.4 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-0.4 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month6 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month1 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-6 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-7.7 Percentage correct words
Secondary

Difference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month1.6 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-10.2 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month4.4 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month0.8 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-2 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-1.3 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-4 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month4.7 Percentage correct words
Secondary

Difference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at 0 dB SNR. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month10 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month5.2 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month9.6 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month10.4 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month24.5 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-2.3 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month12.3 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Noise Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month14.7 Percentage correct words
Secondary

Difference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with no background noise present. Recorded AzBio Sentences lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were collocated in this condition. Resultant score is a difference in mean percentage of words correct between cochlear implant on versus off; a positive difference translates to a higher score with the cochlear implant on, whereas a negative difference translates to a lower score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month1 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month0 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month0.2 Percentage correct words
Vestibular SchwannomaDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month0.6 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month0.5 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month2.3 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month0.7 Percentage correct words
Meniere's DiseaseDifference in AzBio Sentences in Quiet Scores With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month0 Percentage correct words
Secondary

Difference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech and noise were colocated in this condition (S0N0). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-1.5 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-0.8 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month0.3 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-0.6 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-1 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-0.3 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-0.8 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0N0) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month1 dB SNR
Secondary

Difference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the implanted side in this condition (S0NCI). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month1.4 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month0.4 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-0.6 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-1.2 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-1.8 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-0.5 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month0.5 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NCI) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-0.2 dB SNR
Secondary

Difference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Testing open-set sentence understanding with concurrent background noise present at various levels. Recorded BKB-SIN lists were presented to the participant while listening with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone; the speech was presented at 0 degrees azimuth and noise to the contralateral ear in this condition (S0NContra). Resultant score is a difference in the mean signal-to-noise ratio at which the participant scores 50% of the target words correct between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month0.8 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-0.4 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-0.3 dB SNR
Vestibular SchwannomaDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-0.5 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month0.3 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-1.5 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-1.2 dB SNR
Meniere's DiseaseDifference in BKB-SIN Scores (S0NContra) With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-3 dB SNR
Secondary

Difference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time

Participants identified a speech-shaped noise source presented at various presentation levels within an 11-speaker array. Participants localized the sound source with the cochlear implant on and contralateral ear open and also while listening with the cochlear implant off/contralateral ear alone. The RMS error (degrees) was estimated; a lower degree is more accurate/better localization of the sound source. The resultant score reported here is a difference in mean RMS error between cochlear implant on versus off; a negative difference translates to a better score with the cochlear implant on, whereas a positive difference translates to a worse score with the cochlear implant on.

Time frame: Intervals within the first 12 months of device use

Population: Cochlear Implant Use/Follow-Up One participant in the Meniere's disease group did not complete the 12-month follow-up interval (protocol deviation) and is excluded from that analysis.

ArmMeasureGroupValue (MEAN)
Vestibular SchwannomaDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-37.5 Degrees
Vestibular SchwannomaDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-31.2 Degrees
Vestibular SchwannomaDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-35.9 Degrees
Vestibular SchwannomaDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-40 Degrees
Meniere's DiseaseDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time12-Month-36.5 Degrees
Meniere's DiseaseDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time1-Month-26.8 Degrees
Meniere's DiseaseDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time6-Month-41.5 Degrees
Meniere's DiseaseDifference in Localization RMS Error With the Cochlear Implant on (Plus Contralateral Ear Open) Versus Off (Contralateral Ear Alone) Over Time3-Month-41.3 Degrees

Source: ClinicalTrials.gov ยท Data processed: Feb 4, 2026