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新生儿耳聋后通过人工耳蜗恢复微秒的两耳时间差辨别能力。

Microsecond interaural time difference discrimination restored by cochlear implants after neonatal deafness.

机构信息

Department of Biomedical Sciences, City University of Hong Kong, Hong Kong, China.

Neurobiological Research Laboratory, Section for Clinical and Experimental Otology, University Medical Center Freiburg, Freiburg, Germany.

出版信息

Elife. 2021 Jan 11;10:e59300. doi: 10.7554/eLife.59300.

Abstract

Spatial hearing in cochlear implant (CI) patients remains a major challenge, with many early deaf users reported to have no measurable sensitivity to interaural time differences (ITDs). Deprivation of binaural experience during an early critical period is often hypothesized to be the cause of this shortcoming. However, we show that neonatally deafened (ND) rats provided with precisely synchronized CI stimulation in adulthood can be trained to lateralize ITDs with essentially normal behavioral thresholds near 50 μs. Furthermore, comparable ND rats show high physiological sensitivity to ITDs immediately after binaural implantation in adulthood. Our result that ND-CI rats achieved very good behavioral ITD thresholds, while prelingually deaf human CI patients often fail to develop a useful sensitivity to ITD raises urgent questions concerning the possibility that shortcomings in technology or treatment, rather than missing input during early development, may be behind the usually poor binaural outcomes for current CI patients.

摘要

人工耳蜗(CI)患者的空间听觉仍然是一个主要挑战,许多早期失聪用户报告说对侧间时间差(ITD)没有可测量的敏感性。剥夺早期关键期的双耳体验通常被假设为这种缺陷的原因。然而,我们表明,在成年期给予精确同步的 CI 刺激的新生聋(ND)大鼠可以通过基本正常的行为阈值进行训练,该阈值接近 50 μs 来进行 ITD 定位。此外,在成年后进行双耳植入后,类似的 ND 大鼠对 ITD 表现出很高的生理敏感性。我们的结果表明,ND-CI 大鼠实现了非常好的行为 ITD 阈值,而在语言前期失聪的人 CI 患者通常无法对 ITD 产生有用的敏感性,这就提出了一个紧迫的问题,即目前 CI 患者的双耳结果通常较差,其原因可能是技术或治疗上的缺陷,而不是早期发育过程中的输入缺失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f44/7815311/91f68f4b56d0/elife-59300-fig1.jpg

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