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重新定义人类外侧前额叶皮质内工作记忆过程的功能组织。

Redefining the functional organization of working memory processes within human lateral prefrontal cortex.

作者信息

Owen A M, Herrod N J, Menon D K, Clark J C, Downey S P, Carpenter T A, Minhas P S, Turkheimer F E, Williams E J, Robbins T W, Sahakian B J, Petrides M, Pickard J D

机构信息

MRC Cognition and Brain Sciences Unit, Cambridge, UK.

出版信息

Eur J Neurosci. 1999 Feb;11(2):567-74. doi: 10.1046/j.1460-9568.1999.00449.x.

Abstract

It is widely held that the frontal cortex plays a critical part in certain aspects of spatial and non-spatial working memory. One unresolved issue is whether there are functionally distinct subdivisions of the lateral frontal cortex that subserve different aspects of working memory. The present study used positron emission tomography (PET) to demonstrate that working memory processes within the human mid-dorsolateral and mid-ventrolateral frontal regions are organized according to the type of processing required rather than according to the nature (i.e. spatial or non-spatial), of the information being processed, as has been widely assumed. Two spatial working memory tasks were used which varied in the extent to which they required different executive processes. During a 'spatial span' task that required the subject to hold a sequence of five previously remembered locations in working memory a significant change in blood-flow was observed in the right mid-ventrolateral frontal cortex, but not in the anatomically and cytoarchitectonically distinct mid-dorsolateral frontal-lobe region. By contrast, during a '2-back' task that required the subject to continually update and manipulate an ongoing sequence of locations within working memory, significant blood flow increases were observed in both mid-ventrolateral and mid-dorsolateral frontal regions. When the two working memory tasks were compared directly, the one that emphasized manipulation of information within working memory yielded significantly greater activity in the right mid-dorsolateral frontal cortex only. This dissociation provides unambiguous evidence that the mid-dorsolateral and mid-ventrolateral frontal cortical areas make distinct functional contributions to spatial working memory and corresponds with a fractionation of working memory processes in psychological terms.

摘要

人们普遍认为,额叶皮质在空间和非空间工作记忆的某些方面起着关键作用。一个尚未解决的问题是,外侧额叶皮质是否存在功能上不同的细分区域,这些区域负责工作记忆的不同方面。本研究使用正电子发射断层扫描(PET)来证明,人类额中背外侧和额中腹外侧区域内的工作记忆过程是根据所需的处理类型组织的,而不是像人们普遍假设的那样,根据所处理信息的性质(即空间或非空间)组织的。使用了两个空间工作记忆任务,它们在所需的不同执行过程的程度上有所不同。在一个“空间广度”任务中,要求受试者在工作记忆中记住五个先前记住的位置序列,在右侧额中腹外侧皮质观察到血流有显著变化,但在解剖学和细胞结构上不同的额中背外侧叶区域没有观察到。相比之下,在一个“2-back”任务中,要求受试者在工作记忆中不断更新和操作正在进行的位置序列,在额中腹外侧和额中背外侧区域都观察到显著的血流增加。当直接比较这两个工作记忆任务时,强调在工作记忆中对信息进行操作的任务仅在右侧额中背外侧皮质产生了显著更大的活动。这种分离提供了明确的证据,表明额中背外侧和额中腹外侧皮质区域对空间工作记忆做出了不同的功能贡献,并且在心理学层面上与工作记忆过程的细分相对应。

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