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Basic Retinal Circuitry in Health and Disease

机译:健康与疾病中的基本视网膜回路

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摘要

Because it is a highly approachable part of the brain, the retina is by far one of the best known regions of the Central Nervous System. The systematic application of modern neuroanatomical and quantitative techniques has provided the complete catalogue of retinal cells, while electrophysiological experiments are gradually revealing their functions. Retinal complexity is achieved through serial and parallel connections of about 50 different types of neurons. Among retinal circuits, the best known is the rod pathway, a chain of neurons by which rod-generated signals are grafted onto an evolutionary more antique cone system. About ten types of cone bipolar cells provide parallel channels conveying to the brain information related to colour, temporal domain, motion etc. This elegant and complex circuitry becomes severely corrupted in retinal degeneration causing the progressive death of photoreceptors for genetic causes. Retinitis Pigmentosa and related disorders are more than just photoreceptor diseases, as inner retinal cells are severely affected by the loss of their major input neurons.
机译:由于视网膜是大脑的一个非常容易接近的部分,因此,视网膜是迄今为止中枢神经系统最著名的区域之一。现代神经解剖学和定量技术的系统应用提供了视网膜细胞的完整目录,而电生理实验正逐渐揭示其功能。视网膜复杂性是通过大约50种不同类型的神经元的串行和并行连接实现的。在视网膜回路中,最广为人知的是杆状通路,即一条神经元链,通过该神经元链,杆产生的信号被移植到进化更古老的圆锥体系统上。大约十种类型的视锥细胞双极细胞提供平行的通道,将与颜色,时域,运动等有关的信息传递到大脑。这种优雅而复杂的电路在视网膜变性中严重受损,导致遗传性光感受器逐渐死亡。色素性视网膜炎和相关疾病不仅仅是光感受器疾病,因为内部视网膜细胞会受到主要输入神经元丢失的严重影响。

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