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听觉中脑植入物:电极位置的影响。

The auditory midbrain implant: effects of electrode location.

作者信息

Lim Hubert H, Lenarz Thomas, Anderson David J, Lenarz Minoo

机构信息

Otorhinolaryngology Department, Hannover Medical University, Carl-Neuberg-Strasse1, Gebaeude K5, Ebene 1, Raum 4010, Hannover 30625, Germany.

出版信息

Hear Res. 2008 Aug;242(1-2):74-85. doi: 10.1016/j.heares.2008.02.003. Epub 2008 Feb 15.

Abstract

The auditory midbrain implant (AMI) is a new hearing prosthesis designed for stimulation of the inferior colliculus in patients who do not receive sufficient benefit from cochlear or brainstem prostheses. We have begun clinical trials in which three patients have been implanted with the AMI. Although the intended target was the central nucleus of the inferior colliculus (ICC), the electrode array was implanted into different locations across patients (i.e., ICC, dorsal cortex of inferior colliculus, lateral lemniscus). In this paper, we will summarize the effects of electrical stimulation of these different midbrain regions on various psychophysical properties and speech perception performance. The patient implanted within the intended target, the ICC, exhibited the greatest improvements in hearing performance. However, this patient has not yet achieved open-set speech perception to the performance level typically observed for cochlear implant patients, which we believe is partially due to the location of the array within the ICC. We will present findings from previous AMI studies in guinea pigs demonstrating the existence of spatially distinct functional output regions within the ICC and suggesting that further improvements in performance may be achieved by stimulating within a rostral-ventral region. Remaining questions include if a similar organization exists in the human ICC and if stimulation of its rostral-ventral region with currently available strategies (i.e., those designed for cochlear implants) can restore sufficient speech perception.

摘要

听觉中脑植入物(AMI)是一种新型听力假体,专为那些从耳蜗或脑干假体中未获得足够益处的患者刺激下丘而设计。我们已经开始了临床试验,其中三名患者已植入AMI。尽管预期靶点是下丘中央核(ICC),但电极阵列在不同患者中植入到了不同位置(即ICC、下丘背侧皮质、外侧丘系)。在本文中,我们将总结对这些不同中脑区域进行电刺激对各种心理物理学特性和言语感知性能的影响。植入预期靶点ICC内的患者在听力性能方面表现出最大改善。然而,该患者尚未达到人工耳蜗患者通常观察到的开放言语感知性能水平,我们认为这部分是由于阵列在ICC内的位置所致。我们将展示之前在豚鼠身上进行的AMI研究结果,这些结果表明ICC内存在空间上不同的功能输出区域,并表明通过在嘴腹侧区域进行刺激可能会进一步提高性能。其余问题包括人类ICC中是否存在类似的组织,以及用目前可用的策略(即那些为人工耳蜗设计的策略)刺激其嘴腹侧区域是否能恢复足够的言语感知。

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