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个体前额叶神经元通过在空间工作记忆表现期间旋转参考系,有助于感觉运动信息的转换。

Individual prefrontal neurons contribute to sensory-to-motor information transformation by rotating reference frames during spatial working memory performance.

机构信息

Advanced Research Institute for Multidisciplinary Science, Beijing Institute of Technology, Haidian District, Beijing 100018, People's Republic of China.

School of Life Science, Beijing Institute of Technology, Haidian District, Beijing 100018, People's Republic of China.

出版信息

Cereb Cortex. 2023 Sep 26;33(19):10258-10271. doi: 10.1093/cercor/bhad280.

Abstract

Performing working memory tasks correctly requires not only the temporary maintenance of information but also the visual-to-motor transformation of information. Although sustained delay-period activity is known to be a mechanism for temporarily maintaining information, the mechanism for information transformation is not well known. An analysis using a population of delay-period activities recorded from prefrontal neurons visualized a gradual change of maintained information from sensory to motor as the delay period progressed. However, the contributions of individual prefrontal neurons to this process are not known. In the present study, we used a version of the delayed-response task, in which monkeys needed to make a saccade 90o clockwise from a visual cue after a 3-s delay, and examined the temporal change in the preferred directions of delay-period activity during the delay period for individual neurons. One group of prefrontal neurons encoded the cue direction by a retinotopic reference frame and either maintained it throughout the delay period or rotated it 90o counterclockwise to adjust visual information to saccade information, whereas other groups of neurons encoded the cue direction by a saccade-based reference frame and rotated it 90o clockwise. The results indicate that visual-to-motor information transformation is achieved by manipulating the reference frame to adjust visual coordinates to motor coordinates.

摘要

正确执行工作记忆任务不仅需要临时保持信息,还需要进行信息的视觉到运动的转换。虽然持续的延迟期活动被认为是暂时保持信息的一种机制,但信息转换的机制尚不清楚。对从前额叶神经元记录的延迟期活动进行的群体分析表明,随着延迟期的进行,维持信息从感觉向运动逐渐变化。然而,个体前额叶神经元对这一过程的贡献尚不清楚。在本研究中,我们使用了一种延迟反应任务的变体,猴子需要在 3 秒的延迟后,从视觉提示开始进行 90 度的顺时针扫视。我们检查了在延迟期间,个体神经元的延迟期活动的最优方向随时间的变化。一组前额叶神经元通过视网膜参照系来编码提示方向,要么在整个延迟期间保持不变,要么逆时针旋转 90 度,以调整视觉信息以适应扫视信息,而其他神经元组则通过基于扫视的参照系来编码提示方向,并顺时针旋转 90 度。研究结果表明,通过操纵参照系来调整视觉坐标以适应运动坐标,实现了视觉到运动的信息转换。

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