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小脑间位核在反射及条件性眼睑反应的产生与控制中的作用。

Role of cerebellar interpositus nucleus in the genesis and control of reflex and conditioned eyelid responses.

作者信息

Jiménez-Díaz Lydia, Navarro-López Juan de Dios, Gruart Agnès, Delgado-García José M

机构信息

División de Neurociencias, Universidad Pablo de Olavide, Sevilla-41013, Spain.

出版信息

J Neurosci. 2004 Oct 13;24(41):9138-45. doi: 10.1523/JNEUROSCI.2025-04.2004.

Abstract

The role of cerebellar circuits in the acquisition of new motor abilities is still a matter of intensive debate. To establish the contribution of posterior interpositus nucleus (PIN) to the performance and/or acquisition of reflex and classically conditioned responses (CRs) of the eyelid, the effects of microstimulation and/or pharmacological inhibition by muscimol of the nucleus were investigated in conscious cats. Microstimulation of the PIN in naive animals evoked ramp-like eyelid responses with a wavy appearance, without producing any noticeable plastic functional change in the cerebellar and brainstem circuits involved. Muscimol microinjections decreased the amplitude of reflex eyeblinks evoked by air puffs, both when presented alone or when paired with a tone as conditioned stimulus (CS). In half-conditioned animals, muscimol injections also decreased the amplitude and damped the typical wavy profile of CRs, whereas microstimulation of the same sites increased both parameters. However, neither muscimol injections nor microstimulation modified the expected percentage of CRs, suggesting a major role of the PIN in the performance of eyelid responses rather than in the learning process. Moreover, the simultaneous presentation of CS and microstimulation in well trained animals evoked CRs similar in amplitude to the added value of those evoked by the two stimuli presented separately. In contrast, muscimol-injected animals developed CRs to paired CS and microstimulation presentations, larger than those evoked by the two stimuli when presented alone. It is concluded that the PIN contributes to the enhancement of both reflex and conditioned eyelid responses and to the damping of resonant properties of neuromuscular elements controlling eyelid kinematics.

摘要

小脑回路在新运动能力习得中的作用仍是一个激烈争论的话题。为了确定后间位核(PIN)对眼睑反射和经典条件反应(CRs)的表现和/或习得的贡献,研究了在清醒猫中对该核进行微刺激和/或用蝇蕈醇进行药理学抑制的效果。对未受过训练的动物的PIN进行微刺激会诱发呈波浪状的斜坡样眼睑反应,而不会在所涉及的小脑和脑干回路中产生任何明显的可塑性功能变化。单独或与作为条件刺激(CS)的音调配对时,向动物注射蝇蕈醇会降低由吹气诱发的反射性眨眼幅度。在半条件化动物中,注射蝇蕈醇也会降低CRs的幅度并减弱其典型的波浪状特征,而对相同部位的微刺激则会增加这两个参数。然而,注射蝇蕈醇和微刺激均未改变预期的CRs百分比,这表明PIN在眼睑反应的表现而非学习过程中起主要作用。此外,在训练有素的动物中同时呈现CS和微刺激会诱发幅度与分别呈现这两种刺激所诱发的幅度增加值相似的CRs。相比之下,注射蝇蕈醇的动物对配对的CS和微刺激呈现产生的CRs比单独呈现这两种刺激时诱发的CRs更大。得出的结论是,PIN有助于增强反射性和条件性眼睑反应,并有助于抑制控制眼睑运动学的神经肌肉元件的共振特性。

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