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小脑损伤削弱了搜索空间的空间结构的策略性使用。

Cerebellar damage loosens the strategic use of the spatial structure of the search space.

机构信息

IRCCS Santa Lucia Foundation, Rome, Italy.

出版信息

Cerebellum. 2010 Mar;9(1):29-41. doi: 10.1007/s12311-009-0134-4.

DOI:10.1007/s12311-009-0134-4
PMID:19798544
Abstract

The influence of a hemicerebellar lesion on the exploration of environments with different spatial distributions of multiple rewards was analyzed. Hemicerebellectomized (HCbed) and intact rats were submitted to a search task in which they had to explore nine food trays in an open field, avoiding repeated visits. Trays were spatially arranged in four configurations: cross, 3 x 3 matrix, circle, and three clusters of three trays each. Lesioned and intact rats' performances improved in all configurations used. However, the explorative activity of the HCbed animals differed from that of intact rats. Lesioned animals spent more time, made more errors, displayed lower search efficiency, exhibited shorter final spans, and traveled longer distances. They tended to perseverate and to neglect some trays. The cerebellar damage differentially influenced performances as a specific effect of the susceptibility of the configurations to being explored in a principled way. In the cross configuration that had strong spatial constraints, both groups made their lowest number of errors. In the circle configuration, the altered explorative strategies of lesioned animals made extremely demanding the acquisition of the task of searching multiple rewards, in spite of the attempt of favoring their altered procedures through an appropriate spatial arrangement. Since the procedural impairment elicited by cerebellar damage affected the central exploration, the matrix configuration was the most difficult configuration to be explored by the HCbed rats. The poor performances in the cluster configuration indicated that chunking was a strategy of relative strength in rats in general and in HCbed rats in particular.

摘要

对半小脑损伤对探索具有不同空间分布的多种奖励环境的影响进行了分析。半小脑损伤(HCbed)和完整的大鼠被提交到一个搜索任务,他们必须在一个开阔的领域中探索九个食物托盘,避免重复访问。托盘以四种配置空间排列:交叉、3 x 3 矩阵、圆形和三个三托盘组。损伤和完整的大鼠在所有使用的配置中表现都有所提高。然而,HCbed 动物的探索性活动与完整大鼠不同。损伤动物花费更多时间,犯更多错误,表现出较低的搜索效率,表现出较短的最终跨度,并行驶更长的距离。它们倾向于坚持和忽略一些托盘。小脑损伤对表现有不同的影响,这是由于配置的易感性以原则性的方式被探索的特定影响。在具有强烈空间约束的交叉配置中,两组的错误数最少。在圆形配置中,损伤动物改变的探索策略使得搜索多个奖励的任务的获取变得极其困难,尽管试图通过适当的空间安排来促进它们改变的程序。由于小脑损伤引起的程序损伤影响了中央探索,因此矩阵配置是 HCbed 大鼠最难探索的配置。在集群配置中的表现不佳表明,在大鼠中,尤其是在 HCbed 大鼠中,块是一种相对强大的策略。

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