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Impact of Photoreceptor Loss on Retinal Circuitry

机译:视网膜光感受器丧失对电路的影响

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摘要

Our sense of sight relies on photoreceptors, which transduce photons into the nervous system's electrochemical interpretation of the visual world. These precious photoreceptors can be disrupted by disease, injury, and aging. Once photoreceptors start to die, but before blindness occurs, the remaining retinal circuitry can withstand, mask, or exacerbate the photoreceptor deficit and potentially be receptive to newfound therapies for vision restoration. To maximize the retina's receptivity to therapy, one must understand the conditions that influence the state of the remaining retina. In this review, we provide an overview of the retina's structure and function in health and disease. We analyze a collection of observations on photoreceptor disruption and generate a predictive model to identify parameters that influence the retina's response. Finally, we speculate on whether the retina, with its remarkable capacity to function over light levels spanning nine orders of magnitude, uses these same adaptational mechanisms to withstand and perhaps mask photoreceptor loss.
机译:我们的视觉依赖光感受器,它转换光子进入神经系统的电化学的视觉解释世界。受疾病,伤害和老化。感光细胞开始死亡,但在失明发生时,剩下的视网膜电路承受,面具,或加剧光感受器赤字,可能乐于接受新发现治疗视力恢复。视网膜的接受治疗,一个人必须理解影响的条件剩下的视网膜。概述和视网膜的结构功能在健康和疾病。观察在光感受器的集合破坏和产生一个预测模型识别影响视网膜的参数响应。视网膜,非凡的功能的能力在光水平跨越9个的订单级,使用这些adaptational相同机制来承受,也许面具光感受器丧失。

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