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豚鼠的人工耳蜗植入

Cochlear Implantation in the Guinea Pig.

作者信息

Honeder Clemens, Ahmadi Navid, Kramer Anne-Margarethe, Zhu Chengjing, Saidov Nodir, Arnoldner Christoph

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, Medical University of Vienna;

Department of Otorhinolaryngology, Head and Neck Surgery, Medical University of Vienna.

出版信息

J Vis Exp. 2018 Jun 15(136):56829. doi: 10.3791/56829.

Abstract

Cochlear implants are highly efficient devices that can restore hearing in subjects with profound hearing loss. Due to improved speech perception outcomes, candidacy criteria have been expanded over the last few decades. This includes patients with substantial residual hearing that benefit from electrical and acoustical stimulation of the same ear, which makes hearing preservation during cochlear implantation an important issue. Electrode impedances and the related issue of energy consumption is another major research field, as progress in this area could pave the way for fully implantable auditory prostheses. To address these issues in a systematic way, adequate animal models are essential. Therefore, the goal of this protocol is to provide an animal model of cochlear implantation, which can be used to address various research questions. Due to its large tympanic bulla, which allows easy surgical access to the inner ear, as well as its hearing range which is relatively similar to the hearing range of humans, the guinea pig is a commonly used species in auditory research. Cochlear implantation in the guinea pig is performed via a retroauricular approach. Through the bullostomy a cochleostomy is drilled and the cochlear implant electrode is inserted into the scala tympani. This electrode can then be used for electrical stimulation, determination of electrode impedances and the measurement of compound action potentials of the auditory nerve. In addition to these applications, cochlear implant electrodes can also be used as drug delivery devices, if a topical delivery of pharmaceutical agents to the cells or fluids of the inner ear is intended.

摘要

人工耳蜗是一种高效的装置,能够恢复重度听力损失患者的听力。由于言语感知结果有所改善,在过去几十年里,人工耳蜗植入的适应证标准已经扩大。这包括那些具有大量残余听力且能从同一耳的电刺激和声刺激中获益的患者,这使得人工耳蜗植入过程中的听力保留成为一个重要问题。电极阻抗以及相关的能量消耗问题是另一个主要研究领域,因为该领域的进展可能为完全可植入的听觉假体铺平道路。为了系统地解决这些问题,合适的动物模型至关重要。因此,本方案的目标是提供一种人工耳蜗植入的动物模型,可用于解决各种研究问题。豚鼠因其大的鼓泡便于手术进入内耳,以及其听力范围与人类相对相似,是听觉研究中常用的物种。豚鼠的人工耳蜗植入通过耳后入路进行。通过鼓泡造口术钻一个蜗窗造口,然后将人工耳蜗电极插入鼓阶。该电极随后可用于电刺激、电极阻抗测定以及听神经复合动作电位的测量。除了这些应用外,如果打算向内耳的细胞或液体局部递送药剂,人工耳蜗电极还可作为药物递送装置使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b504/6101746/2ab1f1f4e9bf/jove-136-56829-0.jpg

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