Amemori Ken-ichi, Sawaguchi Toshiyuki
Laboratory of Cognitive Neurobiology, Hokkaido University Graduate School of Medicine, N15W7, Kita-ku, Sapporo 060-8638, Japan.
Eur J Neurosci. 2006 Apr;23(7):1895-909. doi: 10.1111/j.1460-9568.2006.04702.x.
When we react to the outer world, perceived sensory information is frequently memorized over a temporal interval then transformed into a motor command based on a behavioural rule. In this type of memory-based sensorimotor transformation, working memory is considered to play an important role. It has been suggested that the lateral prefrontal cortex is involved in the process of the working memory. However, the neuronal mechanism for guiding a motor command from the working memory has not been established. To examine how visuospatial working memory is linked with a forthcoming saccade direction, we used an antisaccade paradigm for monkeys in which a behavioural rule was presented in the middle of a delay period. In this task, the subjects were required to maintain cue location and to select a response based on a behavioural rule. We found that a subset of mnemonic neurons in the lateral prefrontal cortex changed their representation from cue to saccade direction. Furthermore, the discriminability for saccade direction of these neurons tended to appear soon after the behavioural rule presentation, indicating their significant dependency on the behavioural rule. These results suggest that a subset of mnemonic neurons in the lateral prefrontal cortex change their activity depending on a behavioural rule to guide a prospective motor command.
当我们对外界做出反应时,感知到的感觉信息通常会在一段时间间隔内被记忆,然后根据行为规则转化为运动指令。在这种基于记忆的感觉运动转换中,工作记忆被认为起着重要作用。有人提出,外侧前额叶皮层参与工作记忆过程。然而,从工作记忆引导运动指令的神经元机制尚未确立。为了研究视觉空间工作记忆如何与即将到来的扫视方向相关联,我们对猴子采用了反扫视范式,其中在延迟期中间呈现行为规则。在这项任务中,要求受试者保持线索位置并根据行为规则选择反应。我们发现外侧前额叶皮层中的一部分记忆神经元将其表征从线索转变为扫视方向。此外,这些神经元扫视方向的可辨别性往往在行为规则呈现后不久就出现,表明它们对行为规则有显著依赖性。这些结果表明,外侧前额叶皮层中的一部分记忆神经元根据行为规则改变其活动,以引导预期的运动指令。