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The Cerebellum and Red Nucleus Are Not Required for In Vitro Classical Conditioning of the Turtle Abducens Nerve Response

机译:不需要的小脑和红色核体外经典的龟外展神经反应条件。

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摘要

The role of the cerebellum during motor learning is a controversial issue. Many authors have suggested that the cerebellum and its connections with the red nucleus are essential for the acquisition of the conditioned eye blink reflex. Although there is little argument that the cerebellum is an important component to the generation of the conditioned response (CR), a number of studies have suggested that the cerebellum is not essential for conditioning. Using an in vitro model of the classically conditioned turtle abducens nerve response, we investigated the effect of cerebellar and red nucleus lesions on the acquisition, extinction, and reacquisition of CRs. Neural discharge was recorded from the abducens nerve after a single shock unconditioned stimulus (US) was applied to the ipsilateral trigeminal nerve. When the US was paired with a conditioned stimulus (CS) applied to the posterior eighth, or auditory, nerve, a positive slope of CR acquisition was recorded in the abducens nerve. After extinction stimuli in which the CS and US were alternated, the number of CRs decreased to near zero. When the CS and US were once again paired, reacquisition at a faster rate was recorded. The CRs showed unusual timing features compared with preparations in which the cerebellum was intact; they had significantly shorter latencies and showed burst-like responses. These data demonstrate that it is possible to classically condition this in vitro preparation in the absence of the cerebellum and red nucleus. However, the latencies of CRs were found to be dramatically altered in the cerebellar-lesioned preparations, suggesting that the cerebellum does play a role in the timing of the CR.
机译:小脑在运动学习中的作用是一个有争议的问题。许多作者建议,小脑及其与红色核的连接对于获得条件性眨眼反射至关重要。尽管很少有人认为小脑是条件反应(CR)产生的重要组成部分,但许多研究表明,小脑对于条件反应并不是必不可少的。使用经典条件下的龟外展神经反应的体外模型,我们调查了小脑和红色核病变对CR的获取,消灭和重新获得的影响。对同侧三叉神经施加单次电击无条件刺激(US)后,从外展神经记录神经放电。当US与施加在后第八或听觉神经上的条件刺激(CS)配对时,在外展神经中记录到CR获得的正斜率。在CS和US交替灭绝的刺激之后,CR的数量减少到接近零。当CS和US再次配对时,记录了更快的重新购置。与完整小脑的制剂相比,CR表现出不同寻常的时序特征。他们的等待时间显着缩短,并呈现出类似突发的反应。这些数据表明,可以在没有小脑和红色核的情况下经典地调节这种体外制剂。但是,发现小脑病变制剂中CR的潜伏期发生了显着变化,这表明小脑确实在CR的时机中起作用。

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