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Impact of Aging and the Electrode-to-Neural Interface on Temporal Processing Ability in Cochlear-Implant Users: Gap Detection Thresholds

机译:老化的影响和电极对神经界面对耳蜗植入用户的时间加工能力:间隙检测阈值

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摘要

Accurate processing of temporal information is critical to understanding speech through a cochlear implant (CI). This has potential implications for the growing population of CI users who are ≥65 years of age because of age-related auditory temporal processing deficits. The goal of this study was to measure temporal processing ability in a gap detection task in younger, middle-aged, and older CI users and to determine the relative contributions of chronological age and peripheral neural survival to performance. Single-electrode gap detection thresholds (GDTs) were measured using direct stimulation at five electrode locations and three electrical stimulation rates. The relationship between peripheral status (e.g., electrode-to-neural interface) and GDTs was assessed by the slope of the electrically evoked compound action potential (ECAP) amplitude growth function. Results showed that ECAP slope was the strongest subject-level predictor of GDTs. Steeper ECAP slopes, which are partially indicative of better peripheral function, were associated with better GDTs in younger participants. However, ECAP slope significantly interacted with stimulation rate and age, suggesting that ECAP slopes were not predictive of GDTs in middle-aged and older participants at some stimulation rates. ECAP slope was also related to age, with middle-aged and older participants exhibiting relatively shallow slopes and smaller ranges of slopes compared with younger participants. This pattern of ECAP results limited the evaluation of the independent effects of aging per se and peripheral status on temporal processing ability.
机译:准确处理时间信息对于通过耳蜗植入物(CI)来理解语音至关重要。由于年龄相关的听觉时间处理赤字,这对≥65岁的CI用户群体的巨大群体具有潜在的影响。本研究的目标是测量年轻,中年和较旧的CI用户的差距检测任务中的时间加工能力,并确定时间年龄和周围神经生存对性能的相对贡献。使用五个电极位置和三个电刺激率的直接刺激测量单电极间隙检测阈值(GDT)。通过电诱发复合作用电位(ECAP)幅度生长功能的斜率评估外围地位(例如,电极到神经界面)和GDT之间的关系。结果表明,ECAP斜坡是GDTS最强的主题预测因子。陡峭的Ecap斜率,部分指示更好的外围功能,与年轻参与者的更好的GDT相关联。然而,ECAP斜率显着与刺激率和年龄相互作用,表明ECAP斜坡在一些刺激率下没有预测中年和较老的参与者的GDT。与年龄和较年轻的参与者相比,ECAP斜坡也与年龄相关的年龄相关,中年和较旧的参与者表现出相对较浅的斜坡和较小的斜坡。这种ECAP模式的模式限制了对时间加工能力的龄衰老和外围地位的独立效应的评价。

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