窄尖峰和宽尖峰前额叶和顶叶神经元对工作记忆任务的贡献

IF 3.1 4区 医学 Q2 NEUROSCIENCES
Rana Mozumder, Sophia Chung, Sihai Li, Christos Constantinidis
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引用次数: 0

摘要

在灵长类背外侧前额叶和后顶叶皮层中产生持续活动的神经元已被证明对工作记忆任务中的行为具有预测作用,尽管在如何表征信息方面它们之间存在着微妙的差异。关于这些区域中不同神经元类型的作用,目前还没有深入研究。因此,我们比较了记录自雄性猴子背外侧前额叶和后顶叶皮层的窄尖峰神经元(推测为中间神经元)和宽尖峰神经元(推测为锥体神经元)的活动,以分析它们在维持工作记忆中的作用。我们的研究结果表明,窄尖峰神经元在一系列任务中都很活跃,并在需要将刺激保持在记忆中的延迟期产生持续活动。此外,窄尖峰神经元的活动对受试者记忆的预测作用丝毫不亚于宽尖峰神经元,而宽尖峰神经元只是皮层中的投射神经元。我们的研究结果表明,推测性中间神经元在工作记忆的维持过程中发挥着积极作用,并揭示了决定受试者记忆和判断的基本神经回路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contributions of narrow- and broad-spiking prefrontal and parietal neurons on working memory tasks
Neurons that generate persistent activity in the primate dorsolateral prefrontal and posterior parietal cortex have been shown to be predictive of behavior in working memory tasks, though subtle differences between them have been observed in how information is represented. The role of different neuron types in each of these areas has not been investigated at depth. We thus compared the activity of neurons classified as narrow-spiking, putative interneurons, and broad-spiking, putative pyramidal neurons, recorded from the dorsolateral prefrontal and posterior parietal cortex of male monkeys, to analyze their role in the maintenance of working memory. Our results demonstrate that narrow-spiking neurons are active during a range of tasks and generate persistent activity during the delay period over which stimuli need to be maintained in memory. Furthermore, the activity of narrow-spiking neurons was predictive of the subject’s recall no less than that of broad-spiking neurons, which are exclusively projection neurons in the cortex. Our results show that putative interneurons play an active role during the maintenance of working memory and shed light onto the fundamental neural circuits that determine subjects’ memories and judgments.
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来源期刊
Frontiers in Systems Neuroscience
Frontiers in Systems Neuroscience Neuroscience-Developmental Neuroscience
CiteScore
6.00
自引率
3.30%
发文量
144
审稿时长
14 weeks
期刊介绍: Frontiers in Systems Neuroscience publishes rigorously peer-reviewed research that advances our understanding of whole systems of the brain, including those involved in sensation, movement, learning and memory, attention, reward, decision-making, reasoning, executive functions, and emotions.
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