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Reliable detection of low visual acuity in mice with pattern visually evoked potentials

机译:可靠检测具有视觉诱发电位模式的小鼠的低视敏度

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摘要

Measuring the optokinetic response (OKR) to rotating sinusoidal gratings is becoming an increasingly common method to determine visual function thresholds in mice. This is possible also through direct electrophysiological recording of the response of the neurons in the visual cortex to the presentation of reversing patterned stimuli, i.e. the pattern visually evoked potential (pVEP). Herein, we optimized the conditions for recording pVEPs in wild-type mice: we investigated the optimal depth (1, 2, or 3 mm) of the inserted electrode and the optimal stimulus pattern (vertical, horizontal, or oblique black and white stripes, or a checkerboard pattern). Visual acuity was higher when measured with the optimal pVEP recording conditions, i.e., with the electrode at 2 mm and a vertical-stripe stimulus (0.530 ± 0.021 cycle/degree), than with OKR (0.455 ± 0.006 cycle/degree). Moreover, in murine eyes with optic nerve crush-induced low vision, OKR could not measure any visual acuity, while pVEPs allowed the reliable quantification of residual vision (0.064 ± 0.004 cycle/degree). Our results show that pVEPs allow more sensitive measurement of visual function than the OKR-based method. This technique should be particularly useful in mouse models of ocular disease and low vision.
机译:测量对旋转正弦光栅的视动反应(OKR)已成为确定小鼠视觉功能阈值的一种越来越普遍的方法。这也可以通过直接电生理记录视觉皮层中的神经元对逆转的图案化刺激(即图案化的视觉诱发电位(pVEP))表现的反应来实现。在此,我们优化了在野生型小鼠中记录pVEP的条件:我们研究了插入电极的最佳深度(1、2或3mm)和最佳刺激模式(垂直,水平或倾斜的黑白条纹,或棋盘格图案)。在最佳pVEP记录条件下进行测量时,即在2 atmm的电极和垂直条纹刺激下(0.530±0.021周期/度),视觉灵敏度要比OKR(0.455±0.006周期/度)更高。而且,在具有视神经挤压引起的低视力的鼠眼中,OKR不能测量任何视敏度,而pVEPs可以可靠地定量残留视力(0.064±0.004周期/度)。我们的结果表明,pVEP比基于OKR的方法对视觉功能的测量更为敏感。该技术在眼部疾病和低视力的小鼠模型中特别有用。

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