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Modulation of local field potentials in macaque frontal cortex during visual and memory guided saccades.

机译:猕猴额叶皮层在视觉和记忆引导扫视过程中的局部场电位调制。

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摘要

Working memory refers to short term storage of information used to guide ongoing actions. An extensive literature in neuroscience attempts to explain the brain physiology associated with working memory in humans and nonhuman primates. These studies have primarily relied on measures of single neuron action potential rates or measures of the electroencephalogram. In the present thesis, local field potentials (LFPs) were recorded from electrodes in periarcuate and anterior cingulate cortices of a rhesus monkey performing a delayed saccade task. The task involves trails in which the target for a saccade remains illuminated during the delay period and trials in which the target for a saccade disappears during the delay period. This thesis characterizes task dependent modulation of the power spectra of the LFPs recorded during task performance. The results of this thesis showed that LFP power decreased significantly during the delay compared to baseline periods of both trial types in the majority of recordings from both the periarcuate and anterior cingulate regions. In the recordings from the periarcuate cortex, delay period power increased relative to baseline period power and was significantly tuned for one saccade target location in 20% of the recordings. No recordings from anterior cingulate showed significant direction tuning. In periarcuate recordings, delay vs. baseline period increases in power in the gamma band were more likely in shallow cortical sites (1.5 mm from the cortical surface). In anterior cingulate recordings, smaller decreases in delay vs. baseline period power in the alpha and theta bands were more likely in shallow cortical sites. These results were interpreted as evidence for synchronization of shallow cortical LFPs and desynchronization of deep cortical LFPs caused by increased activity of pyramidal neurons and interneurons during saccade planning. Additionally, for both periarcuate and anterior cingulate recordings, power was significantly lower at frequencies below 30 Hz and higher at frequencies above 30 Hz during the delay period of memory vs. visually guided saccade trials. This effect was not correlated with cortical depth of recording site. These results support the premise that working memory is associated with increased synchronization in local cortical circuits in the primate brain.
机译:工作记忆是指用于指导正在进行的操作的信息的短期存储。神经科学方面的大量文献试图解释与人类和非人类灵长类动物的工作记忆相关的大脑生理。这些研究主要依赖于单个神经元动作电位率的测量或​​脑电图的测量。在本论文中,从执行延迟扫视任务的恒河猴的弓状和前扣带回皮层中的电极上记录了局部场电位(LFP)。任务涉及在延误期间使扫视目标保持照明的步道以及在延误期间使扫视目标消失的试验。本文描述了任务执行过程中记录的LFP功率谱的任务相关调制。该论文的结果表明,在大部分弓形和前扣带区域的记录中,与两种试验类型的基线期相比,LFP功率在延迟期间显着降低。在弓状皮质的记录中,延迟时间功率相对于基线时间功率增加,并且在20%的记录中针对一个扫视目标位置进行了显着调整。前扣带回的记录均未显示明显的方向调整。在围骨录音中,在浅皮层部位(距皮层表面<1.5 mm),伽玛谱带功率延迟与基线时间增加的可能性更大。在前扣带记录中,在浅皮层部位,α和theta谱带的延迟相对于基线期功率的减小幅度较小。这些结果被解释为在扫视计划期间锥体神经元和中间神经元活动增加引起的浅皮质LFP同步和深皮质LFP失步的证据。此外,与视觉引导的扫视试验相比,对于弓状和前扣带回记录,在记忆延迟期间,低于30 Hz的频率功率明显降低,高于30 Hz的频率功率更高。这种作用与记录部位的皮层深度无关。这些结果支持这样的前提,即工作记忆与灵长类动物大脑局部皮层回路中增强的同步性相关。

著录项

  • 作者

    Menzer, David Lawrence.;

  • 作者单位

    Weill Medical College of Cornell University.;

  • 授予单位 Weill Medical College of Cornell University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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