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首页> 外文期刊>Trends in Neurosciences >Computational principles of microcircuits for visual object processing in the macaque temporal cortex
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Computational principles of microcircuits for visual object processing in the macaque temporal cortex

机译:猕猴颞皮视觉对象处理微电路的计算原理

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摘要

Understanding the principles of neuronal computation that underlie our cognitive abilities is a fundamental goal of neuroscience. Microcircuits are thought to be computational units embedded in a brain-wide neuronal network. Recent progress in experimental and analytical techniques has enabled the exploration of information flow in operating microcircuits of behaving monkeys. Accumulating evidence demonstrates that crucial transformations of neuronal codes for the representation and memory retrieval of visual objects occur in cortical microcircuits. Particularly, microcircuit comparisons across cortical areas provide novel principles for object processing, in which precursor codes for object features are constructed in a lower-order area before prevalence in a higher-order area. We review recent findings on microcircuit operations in macaque temporal cortex that enable object processing, and discuss future research directions.
机译:理解构成我们认知能力的神经元计算原理是神经科学的基本目标。微电路被认为是嵌入整个大脑神经网络的计算单元。实验和分析技术的最新进展使人们能够探索行为猴子的微电路中的信息流。越来越多的证据表明,皮层微电路中发生了用于表示和记忆视觉对象的神经元代码的关键转换。特别地,跨皮质区域的微电路比较为对象处理提供了新颖的原理,其中在较高阶区域盛行之前,在较低阶区域构造了用于对象特征的前体代码。我们回顾了猕猴颞皮中微电路操作的最新发现,这些操作使对象能够处理,并讨论了未来的研究方向。

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