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Grid cells and neural coding in high-end cortices

机译:高端皮质中的网格细胞和神经编码

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An ultimate goal of neuroscience is to understand the mechanisms of mammalian intellectual functions, many of which are thought to depend extensively on the cerebral cortex. While this may have been considered a remote objective when Neuron was launched in 1988, neuroscience has now evolved to a stage where it is possible to decipher neural-circuit mechanisms in the deepest parts of the cortex, far away from sensory receptors and motoneurons. In this review, we show how studies of place cells in the hippocampus and grid cells in the entorhinal cortex may provide some of the first glimpses into these mechanisms. We shall review the events that led up to the discovery of grid cells and a functional circuit in the entorhinal cortex and highlight what we currently see as the big questions in this field-questions that, if resolved, will add to our understanding of cortical computation in a general sense.
机译:神经科学的最终目标是了解哺乳动物智力功能的机制,其中许多机制被认为广泛依赖于大脑皮层。尽管在1988年推出Neuron时,这可能已经被认为是一个遥远的目标,但神经科学现已发展到可以破译皮质最深处,远离感觉受体和运动神经元的神经回路机制的阶段。在这篇综述中,我们展示了如何研究海马中的位置细胞和内嗅皮层中的网格细胞如何提供对这些机制的一些初步了解。我们将回顾导致内嗅皮层中发现网格细胞和功能电路的事件,并强调我们当前在该领域中所看到的主要问题,这些问题如能得到解决,将加深我们对皮层计算的理解在一般意义上。

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