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神经元复制子假说。

The neuronal replicator hypothesis.

机构信息

Collegium Budapest (Institute for Advanced Study), Budapest, Hungary.

出版信息

Neural Comput. 2010 Nov;22(11):2809-57. doi: 10.1162/NECO_a_00031.

Abstract

We propose that replication (with mutation) of patterns of neuronal activity can occur within the brain using known neurophysiological processes. Thereby evolutionary algorithms implemented by neuro- nal circuits can play a role in cognition. Replication of structured neuronal representations is assumed in several cognitive architectures. Replicators overcome some limitations of selectionist models of neuronal search. Hebbian learning is combined with replication to structure exploration on the basis of associations learned in the past. Neuromodulatory gating of sets of bistable neurons allows patterns of activation to be copied with mutation. If the probability of copying a set is related to the utility of that set, then an evolutionary algorithm can be implemented at rapid timescales in the brain. Populations of neuronal replicators can undertake a more rapid and stable search than can be achieved by serial modification of a single solution. Hebbian learning added to neuronal replication allows a powerful structuring of variability capable of learning the location of a global optimum from multiple previously visited local optima. Replication of solutions can solve the problem of catastrophic forgetting in the stability-plasticity dilemma. In short, neuronal replication is essential to explain several features of flexible cognition. Predictions are made for the experimental validation of the neuronal replicator hypothesis.

摘要

我们提出,利用已知的神经生理过程,大脑内部可以发生模式的神经元活动复制(伴有突变)。由此,通过神经元回路实现的进化算法可以在认知中发挥作用。在几种认知架构中都假设了结构化神经元表示的复制。复制器克服了神经元搜索的选择主义模型的一些局限性。赫布学习与复制相结合,根据过去学习到的关联来构建探索结构。一组双稳态神经元的神经调质门控允许带有突变的激活模式被复制。如果复制一组的概率与该组的效用相关,则可以在大脑的快速时间尺度上实现进化算法。神经元复制器的种群可以比单个解决方案的串行修改更快、更稳定地进行搜索。赫布学习添加到神经元复制中,可以实现强大的变异性结构,从而能够从多个先前访问的局部最优中学习全局最优的位置。解决方案的复制可以解决稳定性-可塑性困境中的灾难性遗忘问题。简而言之,神经元复制对于解释灵活认知的几个特征是必不可少的。针对神经元复制器假设的实验验证提出了预测。

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