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首页> 外文期刊>The Journal of Physiology >Synaptic noise is an information bottleneck in the inner retina during dynamic visual stimulation
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Synaptic noise is an information bottleneck in the inner retina during dynamic visual stimulation

机译:突触噪声是动态视觉刺激过程中内部视网膜的信息瓶颈

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摘要

In daylight, noise generated by cones determines the fidelity with which visual signals are initially encoded. Subsequent stages of visual processing require synapses from bipolar cells to ganglion cells, but whether these synapses generate a significant amount of noise was unknown. To characterize noise generated by these synapses, we recorded excitatory postsynaptic currents from mammalian retinal ganglion cells and subjected them to a computational noise analysis. The release of transmitter quanta at bipolar cell synapses contributed substantially to the noise variance found in the ganglion cell, causing a significant loss of fidelity from bipolar cell array to postsynaptic ganglion cell. Virtually all the remaining noise variance originated in the presynaptic circuit. Circuit noise had a frequency content similar to noise shared by ganglion cells but a very different frequency content from noise from bipolar cell synapses, indicating that these synapses constitute a source of independent noise not shared by ganglion cells. These findings contribute a picture of daylight retinal circuits where noise from cones and noise generated by synaptic transmission of cone signals significantly limit visual fidelity.
机译:在日光下,视锥细胞产生的噪声决定了最初对视觉信号进行编码的保真度。视觉处理的后续阶段需要从双极细胞到神经节细胞的突触,但是这些突触是否产生大量的噪音尚不清楚。为了表征由这些突触产生的噪声,我们记录了来自哺乳动物视网膜神经节细胞的兴奋性突触后电流,并对它们进行了计算噪声分析。在双极细胞突触处释放递质的量大大促进了在神经节细胞中发现的噪声变化,从而导致从双极细胞阵列到突触后神经节细胞的保真度显着损失。几乎所有剩余的噪声方差都起源于突触前电路。电路噪声的频率成分与神经节细胞共享的噪声相似,但与双极细胞突触产生的噪声的频率成分非常不同,这表明这些突触构成神经节细胞未共享的独立噪声源。这些发现有助于了解日光视网膜回路,其中视锥细胞的噪声和视锥细胞信号的突触传递产生的噪声严重限制了视觉保真度。

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