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How do horizontal cells 'talk' to cone photoreceptors? Different levels of complexity at the cone-horizontal cell synapse

机译:如何将水平细胞“谈话”到锥形光感受器? 锥形水平细胞突触在锥形水平细胞突触的不同程度的复杂程度

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The first synapse of the retina plays a fundamental role in the visual system. Due to its importance, it is critical that it encodes information from the outside world with the greatest accuracy and precision possible. Cone photoreceptor axon terminals contain many individual synaptic sites, each represented by a presynaptic structure called a 'ribbon'. These synapses are both highly sophisticated and conserved. Each ribbon relays the light signal to one ON cone bipolar cell and several OFF cone bipolar cells, while two dendritic processes from a GABAergic interneuron, the horizontal cell, modulate the cone output via parallel feedback mechanisms. The presence of these three partners within a single synapse has raised numerous questions, and its anatomical and functional complexity is still only partially understood. However, the understanding of this synapse has recently evolved, as a consequence of progress in understanding dendritic signal processing and its role in facilitating global versus local signalling. Indeed, for the downstream retinal network, dendritic processing in horizontal cells ay be essential, as they must support important functional operations such as contrast enhancement, which requires spatial averaging of the photoreceptor array, while at the same time preserving accurate spatial information. Here, we review recent progress made towards a better understanding of the cone synapse, with an emphasis on horizontal cell function, and discuss why such complexity might be necessary for early visual processing.
机译:视网膜的第一个突触在视觉系统中起着基本作用。由于其重要性,它至关重要,它以最大的准确性和精确度编码来自外界的信息。锥形感光体轴突终端包含许多单独的突触位点,每个突触位点被称为“丝带”的突触图结构表示。这些突触既高度复杂和保守。每个功能区将光信号继承到锥形双极电池上的光信号和几个OFF锥形双极电池,而来自Gabaeric Interneuron,水平电池的两个树枝状过程通过并行反馈机构调制锥形输出。在单个突触中的这三个合作伙伴的存在提出了许多问题,并且其解剖和功能复杂性仍然仅部分地理解。然而,由于了解树突信号处理以及其在促进全球与局部信令方面的作用,最近对这种突触的理解已经发展。实际上,对于下游视网膜网络,水平细胞中的树突处理是必不可少的,因为它们必须支持诸如对比度增强的重要功能操作,这需要感光体阵列的空间平均,而同时保持准确的空间信息。在这里,我们审查了最近朝着更好地理解锥形突触的进展,重点是水平细胞功能,并讨论为早期视觉处理可能需要这种复杂性。

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