Charng Jason, He Zheng, Bui Bang, Vingrys Algis, Ivarsson Magnus, Fish Rebecca, Gurrell Rachel, Nguyen Christine
Department of Optometry and Vision Sciences, University of Melbourne.
Pfizer Neusentis.
J Vis Exp. 2016 Jun 29(112):54160. doi: 10.3791/54160.
The full-field electroretinogram (ERG) and visual evoked potential (VEP) are useful tools to assess retinal and visual pathway integrity in both laboratory and clinical settings. Currently, preclinical ERG and VEP measurements are performed with anesthesia to ensure stable electrode placements. However, the very presence of anesthesia has been shown to contaminate normal physiological responses. To overcome these anesthesia confounds, we develop a novel platform to assay ERG and VEP in conscious rats. Electrodes are surgically implanted sub-conjunctivally on the eye to assay the ERG and epidurally over the visual cortex to measure the VEP. A range of amplitude and sensitivity/timing parameters are assayed for both the ERG and VEP at increasing luminous energies. The ERG and VEP signals are shown to be stable and repeatable for at least 4 weeks post surgical implantation. This ability to record ERG and VEP signals without anesthesia confounds in the preclinical setting should provide superior translation to clinical data.
全视野视网膜电图(ERG)和视觉诱发电位(VEP)是在实验室和临床环境中评估视网膜和视觉通路完整性的有用工具。目前,临床前的ERG和VEP测量是在麻醉状态下进行的,以确保电极放置稳定。然而,麻醉的存在已被证明会干扰正常的生理反应。为了克服这些麻醉干扰因素,我们开发了一种新型平台,用于在清醒大鼠中检测ERG和VEP。通过手术将电极结膜下植入眼睛以检测ERG,并在视觉皮层硬膜外植入以测量VEP。在不断增加的光能量下,对ERG和VEP的一系列幅度和灵敏度/时间参数进行检测。结果显示,ERG和VEP信号在手术植入后至少4周内是稳定且可重复的。在临床前环境中能够在无麻醉干扰的情况下记录ERG和VEP信号,这应该能够为临床数据提供更好的转化。