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Functions of delay-period activity in the prefrontal cortex and mnemonic scotomas revisited

机译:延迟期活动在前额叶皮层和记忆法再访的功能。

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Working memory (WM) is one of key concepts to understand functions of the prefrontal cortex. Delay-period activity is an important neural correlate to understand the role of WM in prefrontal functions. The importance of delay-period activity is that this activity can encode not only visuospatial information but also a variety of information including non-spatial visual features, auditory and tactile stimuli, task rules, expected reward, and numerical quantity. This activity also participates in a variety of information processing including sensory-to-motor information transformation. These mnemonic features of delay-period activity enable to perform various important operations that the prefrontal cortex participates in, such as executive controls, and therefore, support the notion that WM is an important function to understand prefrontal functions. On the other hand, although experiments using manual versions of the delayed-response task had revealed many important findings, an oculomotor version of this task enabled us to use multiple cue positions, exclude postural orientation during the delay period, and further prove the importance of mnemonic functions of the prefrontal cortex. In addition, monkeys with unilateral lesions exhibited specific impairment only in the performance of memory-guided saccades directed toward visual cues in the visual field contralateral to the lesioned hemisphere. This result indicates that memories for visuospatial coordinates in each hemifield are processed primarily in the contralateral prefrontal cortex. This result further strengthened the idea of mnemonic functions of the prefrontal cortex. Thus, the mnemonic functions of the prefrontal cortex and delay-period activity may not need to be reconsidered, but should be emphasized.
机译:工作记忆(WM)是了解前额叶皮层功能的关键概念之一。延迟期活动是重要的神经相关因素,以了解WM在前额叶功能中的作用。延迟期活动的重要性在于,该活动不仅可以编码视觉空间信息,还可以编码各种信息,包括非空间视觉特征,听觉和触觉刺激,任务规则,预期奖励和数量。该活动还参与各种信息处理,包括感觉到运动的信息转换。这些延迟活动的助记符功能使用户能够执行前额叶皮层参与的各种重要操作,例如执行控制,因此支持WM是理解前额叶功能的重要功能的观点。另一方面,尽管使用手动版本的延迟响应任务进行的实验揭示了许多重要发现,但动眼功能的这项任务使我们能够使用多个提示位置,排除了延迟期间的姿势定向,并进一步证明了前额叶皮层的记忆功能。此外,具有单侧病变的猴子仅在针对与病变半球相对的视野中的视觉提示的记忆引导扫视表现中表现出特定的损伤。该结果表明,每个半视野中视觉空间坐标的记忆主要在对侧前额叶皮层中进行。该结果进一步增强了额叶前额叶的记忆功能的概念。因此,前额叶皮层的记忆功能和延迟期活动可能不需要重新考虑,而应予以强调。

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