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Comparison of Cell-type Specific Optogenetic Cortical Stimulation Targeting Distinct Neural Populations for the Restoration of Vision

机译:细胞型特异性致敏皮质刺激的比较靶向不同神经群的视觉恢复

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Stimulation of the visual cortex is a promising method for the restoration of vision, covering a broad range of patients with visual impairments. Optogenetic stimulation has the potential to advance visual restoration. To design better optogenetic implants, an appropriate combination of specific cell types and optogenetic proteins should be identified. Here, we developed a photo-stimulator system and characterized two combinations in the primary visual cortex: targeting excitatory neurons with the red-light-sensitive opto-stimulator chrimsonR and targeting parvalbumin-positive inhibitory neurons with the red-light-sensitive opto-silencer eNpHR-3.0. A custom-developed system consisting of a mini-LED device emitting red-shift light and two convex lenses was installed above the V1 for light focus. We recorded and compared the electrophysiological responses to both visual stimuli and photostimulation. The optogenetic stimulations resulted in a slightly larger number of silence-evoked neurons than excitation-evoked neurons, with a similar number of neurons that responded to visual stimuli.
机译:刺激视觉皮层是恢复视力的有希望的方法,涵盖广泛的视力障碍患者。致光学刺激有可能推进视觉修复。为了设计更好的致灭植入物,应鉴定特定细胞类型和致敏蛋白的适当组合。在这里,我们开发了一种光刺激器系统,并在主要视觉皮层中表征了两种组合:用红光敏感的光刺激器Chrimsonr靶向兴奋性神经元,并用红色光敏光消音器靶向Parvalbumin-阳性抑制神经元enphr-3.0。一种定制的系统,该系统由发射红移光灯和两个凸透镜的迷你LED器件组成,以便在V1上方安装在V1上方,以便轻焦点。我们记录并比较了视觉刺激和光刺激的电生理响应。致素刺激导致沉默诱发神经元的沉默诱发神经元略微增加,具有类似数量的神经元,这些神经元应对视觉刺激。

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