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Cerebellar lesions and the nictitating membrane reflex: performance deficits of the conditioned and unconditioned response

机译:小脑病变和神经膜反射:条件和非条件反应的表现缺陷

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摘要

Unilateral cerebellar lesions abolished the occurrence of ipsilateral conditioned nictitating membrane responses during the 285 msec interval between onset of the conditioned and unconditioned stimuli on paired trials. This effect was obtained in 15 animals sustaining damage to the dorsolateral aspects of the interpositus nucleus and the adjoining white matter. However, conditioned responses did occur during the 800 msec observation interval employed on tone-alone test trials, and these responses exhibited the classic performance deficits normally associated with cerebellar damage: a low frequency of occurrence (14%, as compared with 96% before the lesion); a 3.1 mm decrease in amplitude; a 236 msec increase in onset latency; a 563 msec increase in latency of peak amplitude; and a 327 msec increase in rise time. Four of the 15 animals failed to demonstrate greater than 5% responding during the test trials. These performance deficits were not specific to the learned, conditioned response. Unconditioned responses were also reduced in frequency and increased in latency of peak amplitude and rise time, especially when elicited at lower air-puff intensities. These deficits in the unconditioned response were observed in animals that failed to exhibit conditioned responses on either paired or test trials, as well as in animals demonstrating conditioned responses only during test trials. We conclude that the cerebellum has a general role in regulating the nictitating membrane reflex so that deficits in learned responses observed after cerebellar lesions are secondary to a broader deficit in performance. The performance deficits appear to consist of a sensory component, as reflected by an increase in stimulus threshold for elicitation of the nictitating membrane reflex, and a motor component, as reflected by the altered topography of the evoked response. The results of this study thus reaffirm the role of the cerebellum in regulating the sensorimotor processes necessary for the optimal performance of both conditioned and unconditioned responses and extends this role to the expression of a simple cranial nerve reflex.
机译:在配对试验中,在条件性刺激和非条件性刺激发作之间的285毫秒间隔内,单侧小脑病变消除了同侧条件性神经膜反应的发生。在15只动物中,该动物的内外侧核和相邻的白质受到损伤,从而获得了这种效果。但是,在单独进行音调试验时,在800毫秒的观察间隔内确实发生了条件反应,并且这些反应表现出通常与小脑损伤相关的典型性能缺陷:发生频率较低(14%,而之前为96%)。病变);振幅降低3.1毫米;发作延迟增加236毫秒;峰值幅度潜伏期增加563毫秒;上升时间增加了327毫秒。 15只动物中有4只在测试试验中未显示出超过5%的反应。这些性能缺陷并非特定于所学的条件反应。无条件响应的频率也会降低,峰值幅度和上升时间的潜伏期也会增加,尤其是在较低的吹气强度下引发时。在配对或测试试验中均未显示条件反应的动物中,以及仅在测试试验中显示条件反应的动物中,均观察到了无条件反应的这些缺陷。我们得出的结论是,小脑在调节神经膜反射方面具有一般性作用,因此小脑病变后观察到的学习反应不足会导致更广泛的表现不足。性能缺陷似乎由感觉成分组成,如引起神经膜反射的刺激阈值增加所反映,以及运动成分,如引起的反应形态改变所反映。因此,这项研究的结果重申了小脑在调节最佳条件和非条件反应性能所必需的感觉运动过程中的作用,并将这一作用扩展到简单的颅神经反射的表达。

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