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Visual threshold is set by linear and nonlinear mechanisms in the retina that mitigate noise How neural circuits in the retina improve the signal-to-noise ratio of the single-photon response

机译:视觉阈值是由视网膜中减轻噪音的线性和非线性机制设置的,视网膜中的神经回路如何改善单光子响应的信噪比

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摘要

In sensory biology, a major outstanding question is how sensory receptor cells minimize noise while maximizing signal to set the detection threshold. This optimization could be problematic because the origin of both the signals and the limiting noise in most sensory systems is believed to lie in stimulus transduction. Signal processing in receptor cells can improve the signal-to-noise ratio. However, neural circuits can further optimize the detection threshold by pooling signals from sensory receptor cells and processing them using a combination of linear and nonlinear filtering mechanisms. In the visual system, noise limiting light detection has been assumed to arise from stimulus transduction in rod photo-receptors. In this context, the evolutionary optimization of the signal-to-noise ratio in the retina has proven critical in allowing visual sensitivity to approach the limits set by the quantal nature of light. Here, we discuss how noise in the mammalian retina is mitigated to allow for highly sensitive night vision.
机译:在感觉生物学中,一个主要的悬而未决的问题是感觉受体细胞如何在最大程度地设置设置检测阈值的信号的同时将噪声最小化。这种优化可能会出现问题,因为据信大多数感官系统中信号和限制噪声的起源都在于刺激传导。受体细胞中的信号处理可以改善信噪比。但是,神经回路可以通过合并来自感觉受体细胞的信号并使用线性和非线性滤波机制的组合来处理信号,从而进一步优化检测阈值。在视觉系统中,已假设噪声限制光检测是由杆感光器中的刺激传导引起的。在这种情况下,视网膜中信噪比的进化优化已被证明对于使视觉灵敏度接近光的量子性质所设定的极限至关重要。在这里,我们讨论如何降低哺乳动物视网膜中的噪音以实现高度灵敏的夜视。

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