首页> 外文期刊>Ear and hearing. >Identifying cochlear implant channels with poor electrode-neuron interface: partial tripolar, single-channel thresholds and psychophysical tuning curves.
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Identifying cochlear implant channels with poor electrode-neuron interface: partial tripolar, single-channel thresholds and psychophysical tuning curves.

机译:识别具有不良电极-神经元界面的人工耳蜗通道:部分三极,单通道阈值和心理物理调谐曲线。

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OBJECTIVE: The goal of this study was to evaluate the ability of a threshold measure, made with a restricted electrode configuration, to identify channels exhibiting relatively poor spatial selectivity. With a restricted electrode configuration, channel-to-channel variability in threshold may reflect variations in the interface between the electrodes and auditory neurons (i.e., nerve survival, electrode placement, and tissue impedance). These variations in the electrode-neuron interface should also be reflected in psychophysical tuning curve (PTC) measurements. Specifically, it is hypothesized that high single-channel thresholds obtained with the spatially focused partial tripolar (pTP) electrode configuration are predictive of wide or tip-shifted PTCs. DESIGN: Data were collected from five cochlear implant listeners implanted with the HiRes90k cochlear implant (Advanced Bionics Corp., Sylmar, CA). Single-channel thresholds and most comfortable listening levels were obtained for stimuli that varied in presumed electrical field size by using the pTP configuration for which a fraction of current (sigma) from a center-active electrode returns through two neighboring electrodes and the remainder through a distant indifferent electrode. Forward-masked PTCs were obtained for channels with the highest, lowest, and median tripolar (sigma = 1 or 0.9) thresholds. The probe channel and level were fixed and presented with either the monopolar (sigma = 0) or a more focused pTP (sigma > or = 0.55) configuration. The masker channel and level were varied, whereas the configuration was fixed to sigma = 0.5. A standard, three-interval, two-alternative forced choice procedure was used for thresholds and masked levels. RESULTS: Single-channel threshold and variability in threshold across channels systematically increased as the compensating current, sigma, increased and the presumed electrical field became more focused. Across subjects, channels with the highest single-channel thresholds, when measured with a narrow, pTP stimulus, had significantly broader PTCs than the lowest threshold channels. In two subjects, the tips of the tuning curves were shifted away from the probe channel. Tuning curves were also wider for the monopolar probes than with pTP probes for both the highest and lowest threshold channels. CONCLUSIONS: These results suggest that single-channel thresholds measured with a restricted stimulus can be used to identify cochlear implant channels with poor spatial selectivity. Channels having wide or tip-shifted tuning characteristics would likely not deliver the appropriate spectral information to the intended auditory neurons, leading to suboptimal perception. As a clinical tool, quick identification of impaired channels could lead to patient-specific mapping strategies and result in improved speech and music perception.
机译:目的:本研究的目的是评估用受限电极配置进行阈值测量的能力,以识别表现出相对较差的空间选择性的通道。在受限的电极配置下,阈值之间的通道间差异可能反映出电极与听觉神经元之间的界面变化(即神经存活,电极放置和组织阻抗)。电极-神经元界面的这些变化也应反映在心理物理调谐曲线(PTC)测量中。具体而言,假设通过空间聚焦的局部三极(pTP)电极配置获得的高单通道阈值可预测宽PTC或尖端移位的PTC。设计:从五个植入了HiRes90k人工耳蜗的人工耳蜗监听器(Advanced Bionics Corp.,Sylmar,CA)中收集数据。通过使用pTP配置获得了在假定的电场大小中变化的刺激的单通道阈值和最舒适的聆听水平,其中pTP配置使来自中心有源电极的电流(sigma)的一部分通过两个相邻电极返回,其余部分通过遥远的冷漠电极。对于具有最高,最低和中值三极(sigma = 1或0.9)阈值的通道,可以获得前向掩蔽PTC。探头通道和水平是固定的,并采用单极(sigma = 0)或更集中的pTP(sigma>或= 0.55)配置。掩蔽通道和电平有所变化,而配置固定为sigma = 0.5。对于阈值和掩蔽级别,使用标准的三间隔,两替代强制选择程序。结果:单通道阈值和跨通道阈值的变化随着补偿电流sigma的增加和假定电场的聚焦而系统地增加。在整个受试者中,当使用狭窄的pTP刺激进行测量时,具有最高单通道阈值的通道具有比最低阈值通道更宽的PTC。在两个对象中,调谐曲线的尖端从探针通道移开。对于最高和最低阈值通道,单极探针的调谐曲线也比pTP探针宽。结论:这些结果表明,用受限刺激测量的单通道阈值可用于识别空间选择性差的人工耳蜗通道。具有宽或技巧移动特性的通道可能不会将适当的光谱信息传递给预期的听觉神经元,导致次优的感知。作为一种临床工具,快速识别受损通道可以导致针对患者的映射策略,并改善语音和音乐感知能力。

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