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首页> 外文期刊>eLife journal >Large-scale two-photon imaging revealed super-sparse population codes in the V1 superficial layer of awake monkeys
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Large-scale two-photon imaging revealed super-sparse population codes in the V1 superficial layer of awake monkeys

机译:大型两光子成像显示清醒猴子V1表层中的超稀疏种群代码

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摘要

One general principle of sensory information processing is that the brain must optimize efficiency by reducing the number of neurons that process the same information. The sparseness of the sensory representations in a population of neurons reflects the efficiency of the neural code. Here, we employ large-scale two-photon calcium imaging to examine the responses of a large population of neurons within the superficial layers of area V1 with single-cell resolution, while simultaneously presenting a large set of natural visual stimuli, to provide the first direct measure of the population sparseness in awake primates. The results show that only 0.5% of neurons respond strongly to any given natural image — indicating a ten-fold increase in the inferred sparseness over previous measurements. These population activities are nevertheless necessary and sufficient to discriminate visual stimuli with high accuracy, suggesting that the neural code in the primary visual cortex is both super-sparse and highly efficient.
机译:感觉信息处理的一个普遍原则是,大脑必须通过减少处理相同信息的神经元的数量来优化效率。大量神经元中感觉表示的稀疏性反映了神经代码的效率。在这里,我们采用大规模的双光子钙成像,以单细胞分辨率检查区域V1浅层内大量神经元的反应,同时呈现大量自然视觉刺激,以提供第一个直接测量清醒灵长类动物的种群稀疏性。结果表明,只有0.5%的神经元对任何给定的自然图像都有强烈的反应-表明推断的稀疏度比以前的测量值增加了十倍。但是,这些种群活动对于准确地区分视觉刺激是必要和充分的,这表明初级视觉皮层中的神经代码既稀疏又高效。

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