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对于具有较大电极间距的阵列,语音识别作为通道数量的函数。

Speech recognition as a function of the number of channels for an array with large inter-electrode distances.

作者信息

Berg Katelyn A, Noble Jack H, Dawant Benoit M, Dwyer Robert T, Labadie Robert F, Gifford René H

机构信息

Department of Hearing and Speech Sciences, Vanderbilt University Medical Center, 1215 21st Avenue South, Nashville, Tennessee 37232, USA.

Department of Electrical Engineering and Computer Science, Vanderbilt University, 2201 West End Avenue, Nashville, Tennessee 37235, USA.

出版信息

J Acoust Soc Am. 2021 Apr;149(4):2752. doi: 10.1121/10.0004244.

Abstract

This study investigated the number of channels available to cochlear implant (CI) recipients for maximum speech understanding and sound quality for lateral wall electrode arrays-which result in large electrode-to-modiolus distances-featuring the greatest inter-electrode distances (2.1-2.4 mm), the longest active lengths (23.1-26.4 mm), and the fewest number of electrodes commercially available. Participants included ten post-lingually deafened adult CI recipients with MED-EL electrode arrays (FLEX28 and STANDARD) entirely within scala tympani. Electrode placement and scalar location were determined using computerized tomography. The number of channels was varied from 4 to 12 with equal spatial distribution across the array. A continuous interleaved sampling-based strategy was used. Speech recognition, sound quality ratings, and a closed-set vowel recognition task were measured acutely for each electrode condition. Participants did not demonstrate statistically significant differences beyond eight channels at the group level for almost all measures. However, several listeners showed considerable improvements from 8 to 12 channels for speech and sound quality measures. These results suggest that channel interaction caused by the greater electrode-to-modiolus distances of straight electrode arrays could be partially compensated for by a large inter-electrode distance or spacing.

摘要

本研究调查了人工耳蜗(CI)接受者使用侧壁电极阵列实现最大言语理解和声音质量时可用的通道数量,这种电极阵列电极到蜗轴的距离较大,电极间距离最大(2.1 - 2.4毫米),有效长度最长(23.1 - 26.4毫米),且市面上可买到的电极数量最少。参与者包括10名语后聋成年CI接受者,他们使用的MED-EL电极阵列(FLEX28和标准型)完全置于鼓阶内。使用计算机断层扫描确定电极位置和蜗管位置。通道数量在4到12之间变化,在阵列上具有相等的空间分布。采用基于连续交错采样的策略。针对每种电极条件,急性测量言语识别、声音质量评分和闭集元音识别任务。在几乎所有测量指标上,参与者在组水平上超过8个通道时未表现出统计学上的显著差异。然而,几名受试者在言语和声音质量测量指标上从8个通道增加到12个通道时显示出相当大的改善。这些结果表明,直电极阵列中较大的电极到蜗轴距离所引起的通道相互作用可以通过较大的电极间距离或间距得到部分补偿。

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The importance of electrode location in cochlear implantation.电极位置在人工耳蜗植入中的重要性。
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