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Where You Cut Matters: A Dissection and Analysis Guide for the Spatial Orientation of the Mouse Retina from Ocular Landmarks

机译:您在哪里切割的问题:从眼部地标出发的小鼠视网膜空间取向的解剖和分析指南

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摘要

Accurately and reliably identifying spatial orientation of the isolated mouse retina is important for many studies in visual neuroscience, including the analysis of density and size gradients of retinal cell types, the direction tuning of direction-selective ganglion cells, and the examination of topographic degeneration patterns in some retinal diseases. However, there are many different ocular dissection methods reported in the literature that are used to identify and label retinal orientation in the mouse retina. While the method of orientation used in such studies is often overlooked, not reporting how retinal orientation is determined can cause discrepancies in the literature and confusion when attempting to compare data between studies. Superficial ocular landmarks such as corneal burns are commonly used but have recently been shown to be less reliable than deeper landmarks such as the rectus muscles, the choroid fissure, or the s-opsin gradient. Here, we provide a comprehensive guide for the use of deep ocular landmarks to accurately dissect and document the spatial orientation of an isolated mouse retina. We have also compared the effectiveness of two s-opsin antibodies and included a protocol for s-opsin immunohistochemistry. Because orientation of the retina according to the s-opsin gradient requires retinal reconstruction with Retistruct software and rotation with custom code, we have presented the important steps required to use both of these programs. Overall, the goal of this protocol is to deliver a reliable and repeatable set of methods for accurate retinal orientation that is adaptable to most experimental protocols. An overarching goal of this work is to standardize retinal orientation methods for future studies.
机译:准确,可靠地确定离体小鼠视网膜的空间方向对于视觉神经科学的许多研究都很重要,包括分析视网膜细胞类型的密度和大小梯度,方向选择性神经节细胞的方向调整以及检查拓扑变性模式在一些视网膜疾病中。但是,文献中报道了许多不同的眼解剖方法,这些方法用于识别和标记小鼠视网膜的视网膜方向。尽管通常忽略了此类研究中使用的定向方法,但在尝试比较研究之间的数据时,未报告如何确定视网膜定向可能会导致文献差异和混乱。通常使用浅表眼界标,例如角膜烧伤,但最近显示其可靠性不如更深的界标,例如直肌,脉络膜裂缝或s-视蛋白梯度。在这里,我们提供了使用深层眼部界标准确解剖和记录孤立的小鼠视网膜的空间方向的综合指南。我们还比较了两种s-视蛋白抗体的有效性,并包括了s-视蛋白免疫组织化学的方案。因为根据s-opsin梯度的视网膜方向需要使用Retistruct软件进行视网膜重建并使用自定义代码进行旋转,所以我们提出了使用这两个程序所需的重要步骤。总体而言,该协议的目标是提供一组可靠且可重复的方法,以实现适用于大多数实验协议的准确视网膜定向。这项工作的总体目标是为将来的研究标准化视网膜定位方法。

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