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细胞核在眨眼条件反射中的作用。

Role of the nuclei in eyeblink conditioning.

作者信息

Lavond David G

机构信息

Department of Psychology and Neuroscience Program, University of Southern California, Los Angeles, California 90089-2520, USA.

出版信息

Ann N Y Acad Sci. 2002 Dec;978:93-105. doi: 10.1111/j.1749-6632.2002.tb07558.x.

Abstract

Evidence to date supports the strong conclusion that the cerebellum learns. Classical conditioning of the eyeblink response is critically dependent upon the cerebellum. The issue addressed here is whether cerebellar cortex or deep nuclei form the basic association. Learning occurs with large cerebellar cortical aspirations in rabbits and with a Purkinje-cell-deficient mutation in mice. The learned response is poorly timed, small in amplitude, and inconsistent in its occurrence. Learning nevertheless occurs. Lesions of the interpositus, on the other hand, prevent new learning and abolish previously learned conditioned responses. Small electrolytic lesions, kainic acid lesions, and temporary inactivation (cooling, muscimol, anisomycin) localize learning to the dorsolateral anterior interpositus nucleus. Learning-related unit activity-the signature of the engram-recorded throughout the brain depends on the interpositus. Electrical stimulation of interpositus afferents are needed for conditioning, and the conditioned interpositus has a lowered threshold. Finally, a recent anatomical study with electron microscopy shows synaptic changes in the excitatory inputs to the interpositus with conditioning. The interpositus is responsible for making the basic association between conditioned and unconditioned stimuli, which in turn allows ancillary learning to occur in cerebellar cortex, and possibly brainstem and forebrain.

摘要

迄今为止的证据支持小脑具有学习能力这一有力结论。眨眼反应的经典条件反射严重依赖于小脑。这里要探讨的问题是小脑皮层还是深部核团形成了基本的关联。在兔子身上,随着小脑皮层大量损毁以及在小鼠身上出现浦肯野细胞缺陷性突变时,学习依然会发生。不过,习得的反应在时间上把握不佳,幅度较小,且出现情况不一致。然而学习确实发生了。另一方面,间位核的损伤会阻止新的学习,并消除先前习得的条件反应。微小的电解损伤、 kainic 酸损伤以及暂时失活(冷却、蝇蕈醇、茴香霉素)将学习定位到背外侧前间位核。与学习相关的单位活动——全脑记录的记忆痕迹的特征——依赖于间位核。条件反射需要对间位核传入纤维进行电刺激,且经条件反射后的间位核阈值降低。最后,一项最近的电子显微镜解剖学研究显示,经条件反射后,间位核的兴奋性输入出现了突触变化。间位核负责建立条件刺激和非条件刺激之间的基本关联,这反过来又使得小脑皮层以及可能还有脑干和前脑能够进行辅助学习。

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