[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"trial:NCT05554692":3,"trial-entities:NCT05554692":129,"trial-summary:NCT05554692":134},{"id":4,"nct_id":4,"org_study_id":5,"brief_title":6,"official_title":7,"overall_status":8,"completion_date":9,"status_verified_date":10,"last_update_date":11,"start_date":12,"sponsor_name":13,"lead_sponsor_class":14,"has_dmc":15,"brief_summary":16,"detailed_description":17,"conditions":18,"keywords":23,"study_type":24,"primary_purpose":25,"phases":26,"enrollment_info":28,"interventions":31,"primary_outcomes":43,"secondary_outcomes":63,"sex":83,"minimum_age":84,"maximum_age":85,"healthy_volunteers":86,"eligibility_criteria":87,"std_ages":105,"locations":108,"central_contacts":117,"overall_officials":118,"references":127,"see_also_links":128},"NCT05554692","1781406","Peripheral and Central Influences on Auditory Temporal Processing & Speech Perception in Older Cochlear Implantees","Peripheral and Central Contributions to Auditory Temporal Processing Deficits and Speech Understanding in Older Cochlear Implantees","ENROLLING_BY_INVITATION","2027-03","2025-03","2025-03-25","2022-08-03","University of Maryland, College Park","OTHER",null,"Older adults who use cochlear implants to address hearing loss show wide variation in benefit. This research investigates the role of normal aging, the health of peripheral and central auditory pathways, and positioning of the cochlear implant electrode array in contributing to this variability. A range of input types from simple auditory signals to spoken sentences is used to examine these questions.","This research aims to understand age-related temporal processing in older cochlear-implant (CI) users. The overall objective is to disentangle the peripheral and central contributions to age-related temporal processing deficits in this population. The central hypothesis is that age-related speech perception deficits are explained by unique contributions from peripheral and central auditory functions, significantly affecting outcomes in older CI users.\n\nThe central hypothesis will be tested by determining (1) the extent to which temporal processing of simple signals from single-electrode stimulation can be explained by aging and the peripheral electrode-to-neural interface; (2) the extent to which speech perception can be explained by aging and the peripheral electrode-to-neural interface; (3) the extent and manner in which central auditory compensation overcomes peripheral processing deficits that contribute to age-related performance declines in CI subjects.\n\nOutcome measures collected in this project include behavioral measures of speech and auditory perception and electrophysiological responses.\n\nAlso collected are questionnaire-based reports of history of CI device use, cognitive screening measures, and imaging-based information regarding electrode placement in the cochlea.\n\nBetter understanding of the locus of age-related temporal processing deficits in this population will aid in developing age-specific guidance regarding CI candidacy, programming, and rehabilitation, thereby improving expected benefit and quality of life.",[19,20,21,22],"Hearing Loss","Cochlear Hearing Loss","Hearing Loss, Sensorineural","Aging",[],"INTERVENTIONAL","BASIC_SCIENCE",[27],"NA",{"count":29,"type":30},300,"ESTIMATED",[32,38],{"type":33,"name":34,"description":35,"armGroupLabels":36},"DIAGNOSTIC_TEST","Diagnostic tests of cochlear implant function","Because the subjects in the study will use CI devices that they have already received as part of their standard-of-care treatment, the medical device itself is not an intervention for the purposes of this study. The intervention here will be to carry out diagnostic tests of CI function. This will include perceptual tests of temporal discrimination and speech understanding.",[37],"Enrolled Participants - Older adults with cochlear implants",{"type":33,"name":39,"description":40,"armGroupLabels":41},"Diagnostic tests of auditory function","The intervention here will be to carry out diagnostic tests of hearing. This will include perceptual tests of temporal discrimination and speech understanding.",[42],"Enrolled Participants - Adults with typical hearing",[44,48,51,54,57,60],{"measure":45,"description":46,"timeFrame":47},"Perceptual forward-masking recovery","Basic measurement of temporal processing - A masker stimulus encountered before a probe\u002Ftarget stimulus can affect the perception of the probe stimulus to a greater\u002Flesser degree depending on their separation in time and their absolute and relative levels. Percent correct discrimination as a function of time separation and level manipulations, as measured from a behavioral response, will be reported.","Post-treatment - after at least 1 year use of a cochlear implant if CI user. No required time frame for NH comparison listeners. This measure will be collected once within a 6-month time period for each participant.",{"measure":49,"description":50,"timeFrame":47},"Perceptual gap detection thresholds","Basic behavioral measurement of temporal processing - The ability to detect a silent gap within a stimulus typically varies depending on frequency and level characteristics of the stimulus in which the gap is embedded and also with the hearing history and age of the listener. Gap detection threshold is the shortest gap duration that can be reliably detected under a given set of conditions and is typically reported in milliseconds.",{"measure":52,"description":53,"timeFrame":47},"Perceptual duration discrimination thresholds","Basic measurement of temporal processing - Perceptual duration discrimination thresholds summarize a listener's ability to tell apart stimuli that differ in temporal extent. Percent correct discrimination as a function of duration difference, overall stimulus duration, and level manipulations, as measured from a behavioral response, will be reported.",{"measure":55,"description":56,"timeFrame":47},"Perceptual amplitude discrimination thresholds","Basic measurement of auditory processing - Perceptual amplitude discrimination thresholds summarize a listener's ability to tell apart stimuli that differ in level. Percent correct discrimination as a function of level difference size and average level, as measured from a behavioral response, will be reported.",{"measure":58,"description":59,"timeFrame":47},"Speech perception","Word discrimination, consonant, vowel, and sentence perception tests. The ability to discriminate between and identify recorded words, phonemic contrasts, and sentences will be assessed behaviorally. Results are reported in terms of percent correct words or phonemes.",{"measure":61,"description":62,"timeFrame":47},"Amplitude modulation detection performance","Measure of ability to perceive amplitude modulation using modulation depth thresholds. Amplitude modulation detection performance summarizes a listener's ability to detect the presence of slower-changing amplitude variations applied to a faster-varying carrier signal. The modulation depth of the resulting combined signal can vary between 0 to 100% of the carrier signal with larger values indicating more extreme amplitude fluctuation. This research reports on the amount of modulation that can be detected as a function of different modulator and carrier frequencies, as well as overall stimulus level, as assessed via behavioral report.",[64,68,71,74,77,80],{"measure":65,"description":66,"timeFrame":67},"Electrically evoked compound action potential (ECAP)","ECAP amplitude growth function slopes will be used to predict perceptual performance. This measure uses clinically-available software to track the growth in auditory nerve response (peak-to-peak amplitude) as input level is varied from threshold to the maximal level at which the signal is comfortably loud. The slope of input-output function will be measured for each electrode along the electrode array of each CI study participant. Steeper slopes (measured in microvolts\u002Fcurrent unit) will be interpreted as indicating better neural health of the associated auditory neurons.","Time Frame: Post-treatment - after at least 1 year use of a cochlear implant if CI user. Not collected from NH listeners. This measure will be collected once within a 6-month time period for each participant.",{"measure":69,"description":70,"timeFrame":67},"Electrically evoked compound action potential (ECAP) forward masking recovery","Electrophysiological measurement of auditory nerve refractory time. This measure will be used to predict perceptual performance. Detection thresholds will be measured as masker and probe inputs are varied among a fixed set of levels and the interval between masker and probe is adjusted in duration.",{"measure":72,"description":73,"timeFrame":47},"Electrically or acoustically evoked auditory brainstem response (ABR) - Wave V amplitude","Wave V from the ABR is a reflection of brainstem\u002Fmidbrain processing. We will measure Wave V amplitude (microV) as the masker and probe levels and masker-to-probe interval are varied. This will be used to predict perceptual performance.",{"measure":75,"description":76,"timeFrame":47},"Electrically or acoustically evoked auditory brainstem response (ABR) - Wave V latency","Wave V from the ABR is a reflection of brainstem\u002Fmidbrain processing. We will measure Wave V latency (ms) as the masker and probe levels and masker-to-probe interval are varied. This will be used to predict perceptual performance.",{"measure":78,"description":79,"timeFrame":47},"Cortical auditory evoked potential - N1 and P2 amplitude","Cortical (N1 and P2) amplitude (microV) in response to sound will be used to predict perceptual performance. This is an obligatory response from the auditory cortex that indicates sound detection.",{"measure":81,"description":82,"timeFrame":47},"Cortical auditory evoked potential - N1 and P2 latency","Cortical (N1 and P2) latency (ms) in response to sound will be used to predict perceptual performance. This is an obligatory response from the auditory cortex that indicates sound detection. There is evidence that this latency varies as a function of aging.","ALL","18 Years","85 Years",false,{"inclusion":88,"exclusion":95,"raw_text":104},[89,90,91,92,93,94],"cochlear implant in one or both ears","post-lingual onset of deafness","1+ years cochlear implant experience","use of Cochlear-brand implants","implanted after 2004","audiometrically normal hearing, near-normal hearing, or mild\u002Fmoderate hearing loss.",[96,97,98,99,100,101,102,103],"use of non-Cochlear-brand cochlear implants","no use of oral language","pregnant women are not eligible for the imaging portion of the study.","residual acoustic hearing with unaided thresholds \\\u003C90 dB HL at more than two standard audiometric frequencies","other known disability or neurological disorder","severe hearing loss","history of neurological disorders","history of middle-ear disorders","For Cochlear Implant arm:\n\nInclusion Criteria:\n\n* cochlear implant in one or both ears\n* post-lingual onset of deafness\n* 1+ years cochlear implant experience\n* use of Cochlear-brand implants\n* implanted after 2004\n\nExclusion Criteria:\n\n* use of non-Cochlear-brand cochlear implants\n* no use of oral language\n* pregnant women are not eligible for the imaging portion of the study.\n* residual acoustic hearing with unaided thresholds \\\u003C90 dB HL at more than two standard audiometric frequencies\n* other known disability or neurological disorder\n\nFor Typical Hearing arm:\n\nInclusion Criteria:\n\n* audiometrically normal hearing, near-normal hearing, or mild\u002Fmoderate hearing loss.\n\nExclusion Criteria:\n\n* severe hearing loss\n* history of neurological disorders\n* history of middle-ear disorders",[106,107],"ADULT","OLDER_ADULT",[109],{"facility":13,"city":110,"state":111,"zip":112,"country":113,"geoPoint":114},"College Park","Maryland","20742","United States",{"lat":115,"lon":116},38.98067,-76.93692,[],[119,122,125],{"name":120,"affiliation":13,"role":121},"Matthew J. Goupell, PhD","PRINCIPAL_INVESTIGATOR",{"name":123,"affiliation":13,"role":124},"Samira B. Anderson, PhD","STUDY_DIRECTOR",{"name":126,"affiliation":13,"role":124},"Sandra Gordon-Salant, PhD",[],[],{"nct_id":4,"conditions":130,"biomarkers":133},[19,131,132],"Sensorineural Hearing Loss","Sensory Hearing Loss",[],{"nct_id":4,"found":86,"summary":15,"prompt_version":15}]