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考虑双侧和单侧聋患者的人工耳蜗植入

Considerations for Fitting Cochlear Implants Bimodally and to the Single-Sided Deaf.

机构信息

Department of Medical Physics and Acoustic, University of Oldenburg, Oldenburg, Germany.

Cluster of Excellence Hearing4all, University of Oldenburg, Oldenburg, Germany.

出版信息

Trends Hear. 2022 Jan-Dec;26:23312165221108259. doi: 10.1177/23312165221108259.

Abstract

When listening with a cochlear implant through one ear and acoustically through the other, binaural benefits and spatial hearing abilities are generally poorer than in other bilaterally stimulated configurations. With the working hypothesis that binaural neurons require interaurally matched inputs, we review causes for mismatch, their perceptual consequences, and experimental methods for mismatch measurements. The focus is on the three primary interaural dimensions of latency, frequency, and level. Often, the mismatch is not constant, but rather highly stimulus-dependent. We report on mismatch compensation strategies, taking into consideration the specific needs of the respective patient groups. Practical challenges typically faced by audiologists in the proposed fitting procedure are discussed. While improvement in certain areas (e.g., speaker localization) is definitely achievable, a more comprehensive mismatch compensation is a very ambitious endeavor. Even in the hypothetical ideal fitting case, performance is not expected to exceed that of a good bilateral cochlear implant user.

摘要

当通过一只耳朵的人工耳蜗和另一只耳朵的声学方式进行双耳聆听时,与其他双侧刺激配置相比,双耳益处和空间听觉能力通常较差。基于双耳神经元需要耳间匹配输入的工作假设,我们回顾了不匹配的原因、它们的感知后果以及不匹配测量的实验方法。重点是潜伏期、频率和水平的三个主要的耳间维度。通常,不匹配不是恒定的,而是高度依赖于刺激。我们报告了不匹配补偿策略,同时考虑到各个患者群体的特定需求。讨论了听力学家在提出的适配过程中通常面临的实际挑战。虽然在某些方面(例如,说话人定位)肯定可以得到改善,但更全面的不匹配补偿是一项非常有野心的工作。即使在假设的理想适配情况下,性能也预计不会超过良好的双侧人工耳蜗使用者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b26/9218456/e80ba8bd0eb4/10.1177_23312165221108259-fig1.jpg

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