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Biomimetic stimulation of rat retinal ganglion cells with the neurotransmitter glutamate

机译:谷氨酸神经递质仿生刺激大鼠视网膜神经节细胞

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Millions of people worldwide face partial or total vision loss due to inherited photoreceptor degenerative diseases, which currently have no cure. Retinal prostheses have been developed to restore vision by electrically stimulating surviving retinal neurons, but have low spatial resolution and nonselectively stimulate retinal ganglion cell (RGC) axons along with somata. We propose a biomimetic solution: using the neurotransmitter glutamate to chemically stimulate RGCs to avoid the disadvantages of electrical stimulation. Our results demonstrate that glutamate stimulation has a spatial resolution comparable to current-generation electrical prostheses, can stimulate RGC somata without stimulating axons, and can produce spatially differential responses in RGC subtypes. These results highlight the benefits of a neurotransmitter-based retinal prosthesis over current-generation electrical prostheses.
机译:由于遗传性光感受器退行性疾病,目前尚无治愈方法,全世界数百万人面临部分或全部视力丧失。已经开发了视网膜假体以通过电刺激存活的视网膜神经元来恢复视力,但是其具有较低的空间分辨率并且可以选择性地刺激视网膜神经节细胞(RGC)轴突以及躯体。我们提出了一种仿生解决方案:使用谷氨酸神经递质化学刺激RGC,以避免电刺激的弊端。我们的结果表明,谷氨酸刺激的空间分辨率可与当前的电修复体相媲美,可以刺激RGC躯体而不刺激轴突,并且可以在RGC亚型中产生空间差异反应。这些结果凸显了基于神经递质的视网膜假体比现代电假体的优势。

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