College of Otolaryngology Head and Neck Surgery, Chinese PLA General Hospital; National Clinical Research Center for Otolaryngologic Diseases; Key Lab of Hearing Science, Ministry of Education; Beijing Key Lab of Hearing Impairment for Prevention and Treatment.
College of Otolaryngology Head and Neck Surgery, Chinese PLA General Hospital; National Clinical Research Center for Otolaryngologic Diseases; Key Lab of Hearing Science, Ministry of Education; Beijing Key Lab of Hearing Impairment for Prevention and Treatment;
J Vis Exp. 2022 Jul 28(185). doi: 10.3791/64174.
Cochlear implants (CI) are the most effective method to treat people with severe-to-profound sensorineural hearing loss. Although CIs are used worldwide, no standard model exists for investigating the electrophysiology and histopathology in patients or animal models with a CI or for evaluating new models of electrode arrays. A large animal model with cochlea characteristics similar to those of humans may provide a research and evaluation platform for advanced and modified arrays before their use in humans. To this end, we established standard CI methods with Bama mini-pigs, whose inner ear anatomy is highly similar to that of humans. Arrays designed for human use were implanted into the mini pig cochlea through a round window membrane, and a surgical approach followed that was similar to that used for human CI recipients. Array insertion was followed by evoked compound action potential (ECAP) measurements to evaluate the function of the auditory nerve. This study describes the preparation of the animal, surgical steps, array insertion, and intraoperative electrophysiological measurements. The results indicated that the same CI used for humans could be easily implanted in mini-pigs via a standardized surgical approach and yielded similar electrophysiological outcomes as measured in human CI recipients. Mini-pigs could be a valuable animal model to provide initial evidence of the safety and potential performance of novel electrode arrays and surgical approaches before applying them to human beings.
人工耳蜗植入术 (CI) 是治疗重度至极重度感音神经性听力损失患者的最有效方法。尽管人工耳蜗在全球范围内得到应用,但目前还没有一种标准模型可用于研究植入人工耳蜗的患者或动物模型的电生理和组织病理学,也无法用于评估新型电极阵列。具有与人耳相似特征的大型动物模型可为先进和改良的电极阵列在应用于人类之前提供研究和评估平台。为此,我们建立了巴马小型猪的标准 CI 方法,其内耳解剖结构与人非常相似。设计用于人类使用的阵列通过圆窗膜植入小型猪耳蜗,并采用类似于人类 CI 受者的手术方法。阵列插入后进行诱发复合动作电位 (ECAP) 测量,以评估听神经的功能。本研究描述了动物准备、手术步骤、阵列插入和术中电生理测量。结果表明,通过标准化手术方法可以将相同的用于人类的 CI 轻松植入小型猪体内,并且在人类 CI 受者中测量的电生理结果相似。小型猪可以成为一种有价值的动物模型,为新型电极阵列和手术方法在应用于人类之前提供安全性和潜在性能的初步证据。