Temporal Processing Ability in Older Cochlear-Implant Users
Temporal Processing Ability in Older Cochlear-Implant Users
批准号:
9468505
负责人:
Maureen Joyce Shader
金额:
$5.81万
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-08-14 至 2018-08-13
关键词:
Acoustic NerveAction PotentialsAffectAgeAgingAuditoryAuditory systemClinicalCochlear ImplantsComplexComputersCuesDetectionDigit structureElderlyElectrodesElectrophysiology (science)GoalsGuidelinesHearingHearing AidsImplanted ElectrodesIndividualInstructionKnowledgeLiteratureManufacturer NameMeasuresNational Institute on Deafness and Other Communication DisordersOutcomeParticipantPatientsPerformancePeripheralPhaseProcessPsychophysicsPulse RatesQuality of lifeReportingResearchSignal TransductionSourceSpeechSpeech PerceptionSpeech SoundStatistical Data InterpretationStimulusTechniquesTestingTraining Programsage effectage relatedagedaging populationauditory processingdeafnessdesignelectrical propertyexperimental studyhearing impairmentimprovedmiddle agepersonalized health carerelating to nervous systemresponsesensory prosthesissignal processingsoundspeech recognition
中文摘要
项目总结/文摘
英文摘要
Project Summary/Abstract
The long-term aim of this project is to understand the effect of age on speech recognition in coch-
lear-implant (CI) users. The specific objective of the proposed research is to investigate basic
measures of auditory temporal processing in older CI users to establish age-related temporal
processing deficits. The proposed experiments are designed to measure psychophysical tem-
poral processing ability in younger and older CI users. Aim 1 will measure single-electrode gap
detection ability at different carrier pulse rates. This study will test the hypothesis that older CI
users will display poorer performance on simple, non-speech temporal processing tasks, espe-
cially at fast carrier rates. Aim 2 will measure single-electrode amplitude-modulation (AM) detec-
tion ability at different carrier pulse rates. This study will test the hypothesis that older CI users
will require larger depths of modulation for detection compared to younger CI users, particularly
at fast carrier rates. Electrophysiological responses (electrically evoked compound action poten-
tials [ECAPs]) will also be measured in both aims to investigate the contribution of peripheral
neural survival, which could otherwise confound the effect of age alone, on central auditory tem-
poral processing ability. The training program involves extensive instruction in digit signal pro-
cessing and advanced statistical analysis relevant to the proposed research. The results from the
proposed project will expand the understanding of potential sources of individual variability in CI
outcomes, particularly for older CI users. This knowledge will help to develop improved CI pro-
gramming techniques for CI users with auditory temporal processing deficits.
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