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Neural substrates underlying human delay and trace eyeblink conditioning

机译:人类延迟和痕量眨眼调节的潜在神经基质

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摘要

Classical conditioning paradigms, such as trace conditioning, in which a silent period elapses between the offset of the conditioned stimulus (CS) and the delivery of the unconditioned stimulus (US), and delay conditioning, in which the CS and US coterminate, are widely used to study the neural substrates of associative learning. However, there are significant gaps in our knowledge of the neural systems underlying conditioning in humans. For example, evidence from animal and human patient research suggests that the hippocampus plays a critical role during trace eyeblink conditioning, but there is no evidence to date in humans that the hippocampus is active during trace eyeblink conditioning or is differentially responsive to delay and trace paradigms. The present work provides a direct comparison of the neural correlates of human delay and trace eyeblink conditioning by using functional MRI. Behavioral results showed that humans can learn both delay and trace conditioning in parallel. Comparable delay and trace activation was measured in the cerebellum, whereas greater hippocampal activity was detected during trace compared with delay conditioning. These findings further support the position that the cerebellum is involved in both delay and trace eyeblink conditioning whereas the hippocampus is critical for trace eyeblink conditioning. These results also suggest that the neural circuitry supporting delay and trace eyeblink classical conditioning in humans and laboratory animals may be functionally similar.
机译:经典条件范式(例如跟踪条件)广泛存在,其中在条件刺激(CS)的偏移和未刺激(US)的传递之间经过一个静默期,而延迟条件(CS和US共同终止)用于研究联想学习的神经基础。但是,我们对人类调节基础的神经系统的认识存在很大差距。例如,来自动物和人类患者研究的证据表明,海马在痕量眨眼调节过程中起关键作用,但迄今为止,尚无人类证据表明海马在痕量眨眼调节过程中活跃或对延迟和痕量范式有不同的反应。本工作通过功能性MRI直接比较了人类延迟和微量眨眼条件的神经相关性。行为结果表明,人类可以并行学习延迟和跟踪条件。在小脑中测得了可比的延迟和痕量激活,而与延迟调节相比,在追踪过程中检测到更大的海马活动。这些发现进一步支持了小脑参与延迟和微量眨眼调节的观点,而海马体对于微量眨眼调节至关重要。这些结果还表明,在人和实验动物中支持延迟和痕量眨眼经典条件的神经回路可能在功能上相似。

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  • 作者单位

    Department of Neurology, Division of Cognitive Neuroscience, Johns Hopkins University School of Medicine, 1620 McElderry Street, Reed Hall East 2, Baltimore, MD 21205;

    Department of Physiology, Institute for Neuroscience, Northwestern University Feinberg School of Medicine, 303 East Chicago Avenue, Chicago, IL 60611;

    Queensland Brain Institute, Building 79, University of Queensland, St. Lucia QLD 4072, Australia;

    Department of Neurology, Division of Cognitive Neuroscience, Johns Hopkins University School of Medicine, 1620 McElderry Street, Reed Hall East 2, Baltimore, MD 21205;

    Department of Neurology, Division of Cognitive Neuroscience, Johns Hopkins University School of Medicine, 1620 McElderry Street, Reed Hall East 2, Baltimore, MD 21205;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cerebellum; functional MRI; hippocampus;

    机译:小脑功能性MRI;海马;

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