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Measurement of Electroretinograms and Visually Evoked Potentials in Awake Moving Mice

机译:清醒运动小鼠的视网膜电图和视觉诱发电位的测量

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摘要

The development of new treatments for intractable retinal diseases requires reliable functional assessment tools for animal models. In vivo measurements of neural activity within visual pathways, including electroretinogram (ERG) and visually evoked potential (VEP) recordings, are commonly used for such purposes. In mice, the ERG and VEPs are usually recorded under general anesthesia, a state that may alter sensory transduction and neurotransmission, but seldom in awake freely moving mice. Therefore, it remains unknown whether the electrophysiological assessment of anesthetized mice accurately reflects the physiological function of the visual pathway. Herein, we describe a novel method to record the ERG and VEPs simultaneously in freely moving mice by immobilizing the head using a custom-built restraining device and placing a rotatable cylinder underneath to allow free running or walking during recording. Injection of the commonly used anesthetic mixture xylazine plus ketamine increased and delayed ERG oscillatory potentials by an average of 67.5% and 36.3%, respectively, compared to unanesthetized mice, while having minimal effects on the a-wave and b-wave. Similarly, components of the VEP were enhanced and delayed by up to 300.2% and 39.3%, respectively, in anesthetized mice. Our method for electrophysiological recording in conscious mice is a sensitive and robust means to assess visual function. It uses a conventional electrophysiological recording system and a simple platform that can be built in any laboratory at low cost. Measurements using this method provide objective indices of mouse visual function with high precision and stability, unaffected by anesthetics.
机译:难治性视网膜疾病的新疗法的开发需要可靠的动物模型功能评估工具。视觉通路内的神经活动的体内测量,包括视网膜电图(ERG)和视觉诱发电位(VEP)记录,通常用于此类目的。在小鼠中,ERG和VEP通常在全身麻醉下记录,这种状态可能会改变感觉传导和神经传递,但在清醒自由运动的小鼠中很少见。因此,对麻醉小鼠的电生理评估是否能准确反映视觉通路的生理功能仍是未知的。在这里,我们描述了一种新颖的方法,可通过使用定制的约束装置固定头部并将可旋转的圆柱体置于其下方以允许在记录过程中自由奔跑或行走,从而在自由移动的小鼠中同时记录ERG和VEP。与未麻醉的小鼠相比,注射常用的麻醉混合物甲苯噻嗪和氯胺酮分别使ERG振荡电位平均增加和延迟了67.5%和36.3%,而对a波和b波的影响却最小。同样,在麻醉小鼠中,VEP的成分分别增强和延迟了高达300.2%和39.3%。我们在有意识的小鼠中进行电生理记录的方法是一种评估视觉功能的灵敏且健壮的方法。它使用常规的电生理记录系统和一个简单的平台,可以在任何实验室中以低成本构建该平台。使用此方法进行的测量可提供高精度且稳定的,不受麻醉剂影响的鼠标视觉功能的客观指标。

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