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大鼠纹状体内序列反应时任务与放射状迷宫延迟非匹配任务表现之间的双重分离。

A double dissociation within striatum between serial reaction time and radial maze delayed nonmatching performance in rats.

作者信息

Mair Robert G, Koch Jennifer K, Newman Julie B, Howard James R, Burk Joshua A

机构信息

Department of Psychology, University of New Hampshire, Durham, New Hampshire 03824, USA.

出版信息

J Neurosci. 2002 Aug 1;22(15):6756-65. doi: 10.1523/JNEUROSCI.22-15-06756.2002.

Abstract

Lesions involving the intralaminar thalamic nuclei have been associated with impairments in working memory and intentional motor function in human clinical cases and animal models of amnesia. The intralaminar nuclei have afferent and efferent connections related to striatum. To test whether disruption of striatal function can account for impairments produced by intralaminar lesions, we investigated the effects of striatal lesions on two tasks known to be impaired by intralaminar damage in the rat: radial maze delayed nonmatching (DNM), a measure of spatial working memory, and self-paced serial reaction time (SRT), a measure of intentional response speed. We compared the effects of lesions in four sites: the medial and lateral caudate putamen, nucleus accumbens, and olfactory tubercle. We found that lesions of the medial, accumbens, or tubercle sites impaired DNM performance, and that lesions of the lateral caudate putamen increased choice response time for the SRT task. There was a double dissociation between the effects of the ventral and the lateral lesions on these two tasks. For both tasks, the effects of striatal lesions were qualitatively similar and at least as large as intralaminar lesions in previous studies. These results provide evidence that striatal dysfunction can account for the DNM and SRT impairments produced by intralaminar lesions. The dissociation of functional impairments suggests that lateral sensorimotor areas of caudate putamen are important for responding based on external sensory stimuli and limbic-related areas in ventral striatum are important for responding based on information held in working memory.

摘要

在人类临床病例和失忆症动物模型中,涉及丘脑板内核的损伤与工作记忆和意向性运动功能受损有关。板内核与纹状体有传入和传出连接。为了测试纹状体功能破坏是否能解释板内核损伤所产生的损害,我们研究了纹状体损伤对大鼠已知会因板内核损伤而受损的两项任务的影响:放射状迷宫延迟非匹配(DNM),一种空间工作记忆的测量方法,以及自定步速序列反应时间(SRT),一种意向性反应速度的测量方法。我们比较了四个部位损伤的影响:内侧和外侧尾状壳核、伏隔核和嗅结节。我们发现内侧、伏隔核或结节部位的损伤会损害DNM表现,而外侧尾状壳核的损伤会增加SRT任务的选择反应时间。在这两项任务中,腹侧和外侧损伤的影响存在双重分离。对于这两项任务,纹状体损伤的影响在质量上相似,且至少与先前研究中板内核损伤的影响一样大。这些结果提供了证据,表明纹状体功能障碍可以解释板内核损伤所产生的DNM和SRT损害。功能损害的分离表明,尾状壳核的外侧感觉运动区域对于基于外部感觉刺激做出反应很重要,而腹侧纹状体中与边缘系统相关的区域对于基于工作记忆中的信息做出反应很重要。

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