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Head mounted DLP for visual stimulation in freely moving rats: A novel tool for visual neuroscience research

机译:头戴式DLP用于自由移动大鼠的视觉刺激:一种用于视觉神经科学研究的新型工具

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摘要

Novel technologies are constantly under development for vision restoration in blind patients. In some of these techniques, such as photodiode implants or optogenetics based treatment, a glasses mounted optical projection system projects the visual scene onto the retina. The desired projection system is characterized by a relatively high power density, a localized retinal stimulation area and compatibility for wavelengths that are specific for the technology at hand. The challenges of obtaining such a projection system are not only limited by developing the tools and the apparatus for testing the visual performance of artificial retina, but also devising the technique and the methodology for training and testing the behaving animals using this tool. Current research techniques used for evaluation of visual function in behaving animals utilize computer screens for retinal stimulation, and therefore do not fulfill the requirements of the evaluation of retinal implant performance or optogenetics based treatment (inefficient power and no wavelength flexibility). In the following work we will present and evaluate a novel projection system that is suited for behavioral animal studies and meet the requirements for artificial retinal stimulation. The proposed system is based on a miniature Digital Mirror Device (DMD) for pattern projection and a telescope for relaying the pattern directly onto the animal eye. This system facilitates the projection of patterns with high spatial resolution at high light intensities with the desired wavelength and may prove to be a vital tool in natural and artificial vision performance research in behaving animals.
机译:盲人视力恢复的新技术正在不断开发。在这些技术中的某些技术中,例如光电二极管植入或基于光遗传学的治疗中,安装有眼镜的光学投影系统将视觉场景投射到视网膜上。期望的投影系统的特征在于相对较高的功率密度,局部的视网膜刺激区域以及对手头技术特定波长的兼容性。获得这样的投影系统的挑战不仅受到开发用于测试人造视网膜的视觉性能的工具和设备的限制,而且还受到使用该工具训练和测试行为动物的技术和方法的限制。用于评估行为动物视觉功能的当前研究技术利用计算机屏幕进行视网膜刺激,因此不能满足评估视网膜植入物性能或光遗传学治疗的要求(低效功率且无波长灵活性)。在接下来的工作中,我们将介绍和评估一种新颖的投影系统,该系统适用于行为动物研究并满足人工视网膜刺激的要求。所提出的系统基于用于图案投影的微型数字镜设备(DMD)和用于将图案直接中继到动物眼睛上的望远镜。该系统有助于在具有所需波长的高光强度下以高空间分辨率投影图案,并且可能被证明是行为动物自然和人工视觉性能研究的重要工具。

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