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Holographic optogenetic stimulation of patterned neuronal activity for vision restoration

机译:全息光遗传学刺激图案化的神经元活动,以恢复视力

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When natural photoreception is disrupted, as in outer-retinal degenerative diseases, artificial stimulation of surviving nerve cells offers a potential strategy for bypassing compromised neural circuits. Recently, light-sensitive proteins that photosensitize quiescent neurons have generated unprecedented opportunities for optogenetic neuronal control, inspiring early development of optical retinal prostheses. Selectively exciting large neural populations are essential for eliciting meaningful perceptions in the brain. Here we provide the first demonstration of holographic photo-stimulation strategies for bionic vision restoration. In blind retinas, we demonstrate reliable holographically patterned optogenetic stimulation of retinal ganglion cells with millisecond temporal precision and cellular resolution. Holographic excitation strategies could enable flexible control over distributed neuronal circuits, potentially paving the way towards high-acuity vision restoration devices and additional medical and scientific neuro-photonics applications.
机译:当自然光接收受到破坏时,如在视网膜外变性疾病中,对存活的神经细胞的人工刺激提供了绕过受损神经回路的潜在策略。最近,光敏化静止神经元的光敏蛋白为光遗传学神经元控制带来了前所未有的机会,激发了视网膜光学假体的早期发展。选择性激发大量的神经种群对于在大脑中激发有意义的感知至关重要。在这里,我们提供了仿生视觉恢复全息光刺激策略的第一个演示。在盲视网膜中,我们证明了视网膜神经节细胞的可靠全息图样光遗传学刺激具有毫秒级的时间精度和细胞分辨率。全息激发策略可以实现对分布式神经元电路的灵活控制,从而有可能为高视力恢复设备以及其他医学和科学神经光子学应用铺平道路。

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