学习过程中前脑与小脑的相互作用

Cellscience Pub Date : 2006-10-01 Epub Date: 2006-10-27
Craig Weiss, Aldis P Weible, Roberto Galvez, John F Disterhoft
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引用次数: 0

摘要

大脑皮层和小脑是高层次的神经中枢,它们必须相互配合才能产生协调高效的目标定向运动,包括适时的条件反应所必需的运动。在这篇综述中,我们将介绍利用前脑依赖性痕迹眼动条件反射范例来了解在条件反应的学习和巩固过程中介导小脑-大脑相互作用的神经基质方面所取得的进展。本综述扩展了我们之前的假设,即相互作用发生在投射到脑桥核的部位(Weiss & Disterhoft, 1996),提供了更多关于海马和前额叶皮层在习得过程中的功能以及促进脑桥输入到小脑所涉及的回路的细节,这是痕迹眼动调节的必要条件。我们的讨论描述了海马、尾部扣带回前部、基底神经节、丘脑和感觉皮层的作用,包括利用胡须桶皮层系统的益处。我们认为,感觉皮层的永久性变化、尾状核和丘脑的输入以及灵长类背外侧前额叶皮层的同源物,有助于弥合无刺激痕迹间隔,使小脑产生适时的条件反应。
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Forebrain-Cerebellar Interactions During Learning.

The cerebral cortex and cerebellum are high level neural centers that must interact cooperatively to generate coordinated and efficient goal directed movements, including those necessary for a well-timed conditioned response. In this review we describe the progress made in utilizing the forebrain-dependent trace eyeblink conditioning paradigm to understand the neural substrates mediating cerebro-cerebellar interactions during learning and consolidation of conditioned responses. This review expands upon our previous hypothesis that the interaction occurs at sites that project to the pontine nuclei (Weiss & Disterhoft, 1996), by offering more details on the function of the hippocampus and prefrontal cortex during acquisition and the circuitry involved in facilitating pontine input to the cerebellum as a necessary requisite for trace eyeblink conditioning. Our discussion describes the role of the hippocampus, caudal anterior cingulate gyrus, basal ganglia, thalamus, and sensory cortex, including the benefit of utilizing the whisker barrel cortical system. We propose that permanent changes in the sensory cortex, along with input from the caudate and claustrum, and a homologue of the primate dorsolateral prefrontal cortex, serve to bridge the stimulus free trace interval and allow the cerebellum to generate a well-timed conditioned response.

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