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非人灵长类动物背外侧前额叶皮层中存储与加工功能的关联

Association of storage and processing functions in the dorsolateral prefrontal cortex of the nonhuman primate.

作者信息

Levy R, Goldman-Rakic P S

机构信息

Section of Neurobiology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Neurosci. 1999 Jun 15;19(12):5149-58. doi: 10.1523/JNEUROSCI.19-12-05149.1999.

Abstract

The prominent role of the prefrontal cortex (PFC) in working memory (WM) is widely acknowledged both in nonhuman primates and in humans. However, less agreement exists on the issue of functional segregation within different subregions of the PFC with regard to the domains of spatial and nonspatial processing or involvement in simpler versus more complex aspects of WM, e.g., maintenance versus processing function. To address these issues, six monkeys were trained to perform four WM tasks that differed with respect to domain (spatial vs nonspatial) and level of WM demand (recall of one vs three items). The delayed response format was used to assess simple one-item memory, whereas self-ordering tasks were used to require the monkey to maintain and organize three items of information within WM. After training, the monkeys received bilateral PFC lesions in one of two different areas, Walker's areas 9 and 8B (dorsomedial convexity; n = 3) or areas 46 and 8A (dorsolateral cortex, n = 3) and then tested postoperatively on all tasks. Monkeys with lesions of the dorsomedial convexity were not impaired either on spatial or nonspatial WM tasks, whether the task required simple storage or sequential processing. By contrast, lesions of the dorsolateral cortex produced a significant and persistent impairment in both simple and complex spatial WM but no impairment in the two nonspatial WM tasks. These results support a functional segregation within the dorsolateral prefrontal cortex for WM: the dorsolateral prefrontal cortex (area 46/8A) is selectively involved in spatial WM, whereas the dorsomedial convexity (area 9/8B) is not critically engaged in either spatial or nonspatial working memory. Furthermore, the specific involvement of area 46/8A in spatial sequencing as well as in single-item storage WM tasks supports, in the nonhuman primate, an areal dissociation based on domain rather than on processing demand.

摘要

前额叶皮层(PFC)在工作记忆(WM)中的突出作用在非人类灵长类动物和人类中都得到了广泛认可。然而,关于PFC不同子区域在空间和非空间处理领域或参与WM的简单与复杂方面(例如,维持与处理功能)的功能分离问题,存在较少的共识。为了解决这些问题,对六只猴子进行训练,使其执行四项在领域(空间与非空间)和WM需求水平(回忆一项与三项)方面有所不同的WM任务。延迟反应格式用于评估简单的单项记忆,而自我排序任务则用于要求猴子在WM中维持和组织三项信息。训练后,猴子在两个不同区域之一接受双侧PFC损伤,即沃克9区和8B区(背内侧凸面;n = 3)或46区和8A区(背外侧皮层,n = 3),然后在术后对所有任务进行测试。背内侧凸面受损的猴子在空间或非空间WM任务上均未受损,无论任务是需要简单存储还是顺序处理。相比之下,背外侧皮层损伤在简单和复杂空间WM中均产生了显著且持续的损伤,但在两项非空间WM任务中未产生损伤。这些结果支持背外侧前额叶皮层内WM的功能分离:背外侧前额叶皮层(46/8A区)选择性地参与空间WM,而背内侧凸面(9/8B区)在空间或非空间工作记忆中均未发挥关键作用。此外,46/8A区在空间排序以及单项存储WM任务中的特定参与,在非人类灵长类动物中支持基于领域而非处理需求的区域分离。

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