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Interaural Time-Difference Discrimination as a Measure of Place of Stimulation for Cochlear-Implant Users With Single-Sided Deafness

机译:双耳聋的人工耳蜗使用者耳间时差辨别法作为刺激位置的一种措施

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Current clinical practice in programming a cochlear implant (CI) for individuals with single-sided deafness (SSD) is to maximize the transmission of speech information via the implant, with the implicit assumption that this will also result in improved spatial-hearing abilities. However, binaural sensitivity is reduced by interaural place-of-stimulation mismatch, a likely occurrence with a standard CI frequency-to-electrode allocation table (FAT). As a step toward reducing interaural mismatch, this study investigated whether a test of interaural-time-difference (ITD) discrimination could be used to estimate the acoustic frequency yielding the best place match for a given CI electrode. ITD-discrimination performance was measured by presenting 300-ms bursts of 100-pulses-per-second electrical pulse trains to a single CI electrode and band-limited pulse trains with variable carrier frequencies to the acoustic ear. Listeners discriminated between two reference intervals (four bursts each with constant ITD) and a moving target interval (four bursts with variable ITD). For 17 out of the 26 electrodes tested across eight listeners, the function describing the relationship between ITD-discrimination performance and carrier frequency had a discernable peak where listeners achieved 70% to 100% performance. On average, this peak occurred 1.15 octaves above the CI manufacturer’s default FAT. ITD discrimination shows promise as a method of estimating the cochlear place of stimulation for a given electrode, thereby providing information to optimize the FAT for SSD-CI listeners.
机译:目前针对单侧耳聋(SSD)的个体进行人工耳蜗(CI)编程的临床实践是最大程度地通过植入物传输语音信息,同时隐含的假设是这也将改善空间听觉能力。但是,双耳敏感性会因耳间刺激位置不匹配而降低,这可能是标准CI频率对电极分配表(FAT)发生的情况。作为减少耳间失配的一个步骤,本研究调查了是否可以使用耳间时差(ITD)鉴别测试来估计声频,从而产生给定CI电极的最佳位置匹配。通过将300毫秒的每秒100脉冲的电脉冲串呈现给单个CI电极,并将带可变载波频率的带宽受限的脉冲串呈现给声耳,来测量ITD区分性能。听众在两个参考间隔(每个ITD恒定的四个突发)和一个移动目标间隔(四个ITD可变的突发)之间进行区分。对于在八个听众中测试的26个电极中的17个,描述ITD区分性能和载波频率之间关系的函数有一个可辨别的峰值,听众可以达到70%至100%的性能。平均而言,此峰值出现在CI制造商的默认FAT之上的1.15个八度。 ITD鉴别显示出有望作为估计给定电极刺激的耳蜗位置的方法,从而为SSD-CI监听器提供优化FAT的信息。

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