[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100416902":3},{"organization":4,"armGroups":7,"interventions":19,"overallOfficials":11,"centralContacts":27,"locations":33,"responsibleParty":50,"collaborators":54,"id":59,"slug":60,"hasResults":61,"nctId":62,"briefTitle":63,"officialTitle":63,"acronym":64,"eligibilityCriteria":65,"healthyVolunteers":66,"sex":67,"minAge":68,"maxAge":11,"enrollmentInfo":69,"targetDuration":11,"studyType":72,"phases":73,"briefSummary":75,"conditions":76,"keywords":11,"overallStatus":35,"whyStopped":11,"lastUpdateSubmitDate":79,"lastUpdatePostDateStruct":80,"startDateStruct":83,"completionDateStruct":85,"leadSponsor":87,"locationsCount":88},{"fullName":5,"class":6},"University of Southern California","OTHER",[8,15],{"label":9,"type":10,"description":11,"interventionNames":12},"Stimulation Rate","EXPERIMENTAL",null,[13,14],"Behavioral: Stimulation Rate","Behavioral: Electrode Location",{"label":16,"type":17,"description":11,"interventionNames":18},"Electrode Location","ACTIVE_COMPARATOR",[13,14],[20,24],{"type":21,"name":9,"description":22,"armGroupLabels":23,"otherNames":11},"BEHAVIORAL","Psychophysical training listening to stimulation rate as a cue for auditory pitch perception. The intervention is the listening rehabilitative exercises. Exercises are completed daily as 30-minute sessions for 2 weeks.",[16,9],{"type":21,"name":16,"description":25,"armGroupLabels":26,"otherNames":11},"Psychophysical training listening to electrode location as a cue for auditory pitch perception. The intervention is the listening rehabilitative exercises. Exercises are completed daily as 30-minute sessions for 2 weeks.",[16,9],[28],{"name":29,"role":30,"phone":31,"phoneExt":11,"email":32},"Ray Goldsworthy, PhD","CONTACT","2132223384","raymond.goldsworthy@med.usc.edu",[34],{"facility":5,"status":35,"city":36,"state":37,"zip":38,"country":39,"countryCode":40,"cosmosGeoPoint":41,"geoPoint":46,"contacts":47},"RECRUITING","Los Angeles","California","90033","United States","US",{"type":42,"coordinates":43},"Point",[44,45],-118.24368,34.05223,{"lat":45,"lon":44},[48],{"name":29,"role":30,"phone":49,"phoneExt":11,"email":32},"213-222-3384",{"type":51,"investigatorFullName":52,"investigatorTitle":53,"investigatorAffiliation":5,"oldNameTitle":11,"oldOrganization":11},"PRINCIPAL_INVESTIGATOR","Raymond Goldsworthy","Associate Professor",[55,57],{"name":56,"class":6},"University of Rochester",{"name":58,"class":6},"Ohio State University","100416902","encoding-temporal-fine-structure-for-cochlear-implants-100416902",false,"NCT04708717","Encoding Temporal Fine Structure for Cochlear Implants","TFS4CIs","Inclusion Criteria:\n\n* Cochlear implant users.\n\nExclusion Criteria:\n\n* Younger than 18 years.",true,"ALL","18 Years",{"count":70,"type":71},24,"ESTIMATED","INTERVENTIONAL",[74],"NA","The goal of this study is to improve music and speech perception for cochlear implant users. Presently, most cochlear implants discard the temporal fine structure of sound, which is information that is widely believed to contribute to both music and speech perception. The proposed work examines perceptual and physiological changes that occur once this information is provided to cochlear implant users in a clear and consistent manner.",[77,78],"Hearing Loss","Cochlear Implants","2025-06-27",{"date":81,"type":82},"2025-07-02","ACTUAL",{"date":84,"type":82},"2020-09-01",{"date":86,"type":71},"2026-04-01",{"name":5,"class":6},1]