首页> 外文期刊>Behavioural Brain Research: An International Journal >Learning influence on the behavioral structure of rat response to pain in hot-plate.
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Learning influence on the behavioral structure of rat response to pain in hot-plate.

机译:学习对大鼠热板疼痛反应行为结构的影响。

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Aim of the research was to study, by means of descriptive and multivariate analyses, whether, and how, learning influences the behavioral structure of rat response to pain. To this purpose, a hot-plate test daily repetition procedure was carried out on male Wistar rats for five days. A 6-day interval without stimulation elapsed before last test was carried out on day 12. After composition of an ethogram, descriptive (number, latency, per cent distribution) and multivariate analyses (cluster, stochastic) were carried out for each scheduled test day. One-way ANOVA and Newman-Keuls post-hoc test for multiple comparisons revealed significant changes for climbing, jumping, front-paw licking and stamping mean latencies. Student's t-test, carried out between days 1 and 12, showed that significant modifications persisted over time only for climbing and jumping. Cluster analysis evidenced three different clusters: exploratory (sniffing, walking), primary noxious evoked elements (front-paw licking, hind-paw licking, stamping), and escape (climbing and jumping), each showing modifications during test repetition. Comparison between days 1 and 12 revealed substantial differences in similarity values of escape patterns whereas, for the response to pain ones, a conservative structure of dendrograms was maintained. Stochastic analysis revealed a progressive increase of transitions toward jumping and a significant reduction of the ones between sniffing and walking. Such modifications persisted also after 6 days without any stimulation. Present study shows that learning provokes a complex and fine temporal evolution of the innermost behavioral structure of rat response to pain aiming at a more efficient escape strategy.
机译:该研究的目的是通过描述性和多元分析来研究学习是否以及如何影响大鼠对疼痛反应的行为结构。为此,在雄性Wistar大鼠上进行热板试验每日重复程序五天。在第12天进行最后一次测试之前,没有刺激的情况下进行了6天的间隔测试。在人体表的组成之后,对每个计划的测试天进行了描述性(数量,潜伏期,百分比分布)和多变量分析(集群,随机性) 。单向ANOVA和Newman-Keuls事后检验的多次比较显示,攀爬,跳跃,前爪舔和踩踏平均潜伏期发生了显着变化。在第1天到第12天之间进行的学生t检验显示,随着时间的推移,重大的变化仅在攀爬和跳跃时持续存在。聚类分析证明了三个不同的聚类:探索性(嗅探,行走),主要的有害诱发元素(前爪舔,后爪舔,踩踏)和逃逸(攀爬和跳跃),每组在测试重复过程中均显示出变化。第1天和第12天之间的比较显示,逃逸方式的相似性值存在实质性差异,而对于疼痛者的响应,则保持了树状图的保守结构。随机分析显示,向跳跃的过渡逐渐增加,而在嗅探和行走之间的过渡显着减少。这样的修饰在没有任何刺激的情况下也持续了6天。目前的研究表明,学习激起了大鼠对疼痛的最内在行为结构的复杂而精细的时间演变,旨在实现更有效的逃避策略。

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