Suppr超能文献

电极间距变宽对电流转向性能的影响。

Influence of widening electrode separation on current steering performance.

机构信息

ENT-Department, Leiden University Medical Centre, Leiden, The Netherlands.

出版信息

Ear Hear. 2011 Mar-Apr;32(2):221-9. doi: 10.1097/AUD.0b013e3181f8c0fe.

Abstract

OBJECTIVES

Current steering between adjacent electrodes makes it possible to create more spectral channels than the number of electrodes in an electrode array. With current steering on nonadjacent electrodes, called "spanning," it could be possible to bridge a defective electrode contact or potentially reduce the number of electrode contacts for the same level of access to the auditory nerve. This study investigates the effectiveness of spanning in terms of the number of intermediate pitches, loudness effects, and linearity of the current weighting coefficient (α) with respect to the perceived pitch.

DESIGN

Twelve postlingually deafened users of the HiRes90K cochlear implant with HiFocus1j electrode were randomly selected to participate in this study. Electrode contacts were selected at two locations in the cochlea, as determined on multislice computed tomography: 180° (basal) and 360° (apical) from the round window. For both cochlear locations, three psychophysical experiments were performed using simultaneous stimulation of electrode contacts. An adaptive staircase-based procedure was used. The number of intermediate pitches was assessed with a three-alternative forced choice (3AFC) pitch discrimination task, and the extent of current adjustment required when varying the current weighting coefficient (α) was determined with loudness balancing (2AFC). Finally, the pitch of a spanned channel was matched with the pitch of an intermediate physical electrode in a 2AFC procedure to assess the place of the spanned channel on the electrode array.

RESULTS

Spanning required significantly more current compensation to maintain equal loudness than current steering between adjacent electrode contacts. A significant decrease of discriminable intermediate pitches occurred with spanning in comparison with current steering between adjacent electrode contacts. No significant difference was found between the pitch-matched current steering coefficient and the theoretical coefficient corresponding a priori with the intermediate physical electrode. No significant difference was found between the data from the apical and the basal sections of the electrode array.

CONCLUSIONS

Spanning over wider electrode distance is feasible. With increasing electrode spanning distance, more current compensation is needed to maintain equal loudness, and a gradual deterioration in the just noticeable difference for pitch is observed. However, the pitch progression is linear. For a spanned signal with equal proportions of current delivered to both electrodes, pitch is equivalent to that produced by an intermediate physical electrode.

摘要

目的

当前在相邻电极之间进行转向,可以创建比电极阵列中的电极数量更多的频谱通道。通过对非相邻电极(称为“跨越”)进行转向,可以有可能桥接有缺陷的电极接触,或者有可能减少相同数量的电极接触,从而获得对听神经的相同访问水平。本研究根据中间音的数量、响度效应以及电流加权系数(α)相对于感知音高的线性度,研究跨越的有效性。

设计

随机选择 12 名后天失聪的 HiRes90K 耳蜗植入物使用者(HiFocus1j 电极)参与本研究。根据多切片计算机断层扫描确定的耳蜗位置,选择电极接触点,位置为距圆窗 180°(基底)和 360°(顶)处。对于两个耳蜗位置,使用同时刺激电极接触点进行了三个心理物理实验。使用自适应阶梯式程序。使用三选一强制选择(3AFC)音高辨别任务评估中间音的数量,并使用响度平衡(2AFC)确定在改变电流加权系数(α)时所需的电流调整程度。最后,通过 2AFC 程序将跨越通道的音高与中间物理电极的音高进行匹配,以评估跨越通道在电极阵列上的位置。

结果

跨越需要显著更多的电流补偿来保持相等的响度,而不是相邻电极接触之间的电流转向。与相邻电极接触之间的电流转向相比,跨越时可辨别的中间音的数量明显减少。在跨越与相邻电极接触之间的电流转向的音高匹配电流转向系数与理论上与中间物理电极对应的系数之间没有发现显著差异。在电极阵列的顶区和基底区之间没有发现数据之间存在显著差异。

结论

跨越更大的电极距离是可行的。随着电极跨越距离的增加,需要更多的电流补偿来保持相等的响度,并且对音高的可察觉差异逐渐恶化。然而,音高的进展是线性的。对于具有相等电流比例分配给两个电极的跨越信号,音高等同于中间物理电极产生的音高。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验