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首页> 外文期刊>Trends in Neurosciences >Cerebellar circuits and synaptic mechanisms involved in classical eyeblink conditioning.
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Cerebellar circuits and synaptic mechanisms involved in classical eyeblink conditioning.

机译:经典眨眼调节中涉及的小脑回路和突触机制。

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摘要

There is increasing evidence that, in addition to its major functional role in the regulation of fine motor control, the cerebellum is involved in other important functions, such as sensory-motor learning and memory. Classical conditioning of the eyeblink or nictitating membrane response (and other discrete behavioral responses) is a form of sensory-motor learning that depends crucially upon the cerebellum. Within the cerebellum, however, the relative importance of the cerebellar cortex and the deep cerebellar nuclei in eyeblink conditioning is unclear and disputed. Recent studies employing various mutant mice provide an effective approach to resolving this controversy. Eyeblink conditioning in spontaneous mutant mice deficit in Purkinje cells, the exclusive output neurons of the cerebellar cortex, indicate that both the cerebellar cortex and the interpositus nucleus are important. Furthermore, studies involving gene knockout mice suggest that long-term depression, a process of synaptic plasticity occurring in Purkinje cells, might be involved in eyeblink conditioning.
机译:越来越多的证据表明,小脑除了在精细运动控制的调节中起主要功能作用外,还参与其他重要功能,例如感觉运动学习和记忆。眨眼或神经膜反应(以及其他离散行为反应)的经典调节是感觉运动学习的一种形式,它主要取决于小脑。然而,在小脑内部,小脑皮层和小脑深核在眨眼调节中的相对重要性尚不清楚,也存在争议。最近使用各种突变小鼠的研究提供了解决这一争议的有效方法。自发性突变小鼠小脑皮层的排他性输出神经浦肯野细胞中的眨眼条件表明小脑皮层和中间核均很重要。此外,涉及基因敲除小鼠的研究表明,长期抑郁症(浦肯野细胞中发生的突触可塑性过程)可能与眨眼条件有关。

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