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首页> 外文期刊>Journal of Neurophysiology >Prefrontal task-related activity representing visual cue location or saccade direction in spatial working memory tasks.
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Prefrontal task-related activity representing visual cue location or saccade direction in spatial working memory tasks.

机译:前额任务相关活动,表示空间工作记忆任务中的视觉提示位置或扫视方向。

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To examine what kind of information task-related activity encodes during spatial working memory processes, we analyzed single-neuron activity in the prefrontal cortex while two monkeys performed two different oculomotor delayed-response (ODR) tasks. In the standard ODR task, monkeys were required to make a saccade to the cue location after a 3-s delay, whereas in the rotatory ODR (R-ODR) task, they were required to make a saccade 90 degrees clockwise from the cue location after the 3-s delay. By comparing the same task-related activities in these two tasks, we could determine whether such activities encoded the location of the visual cue or the direction of the saccade. One hundred twenty one neurons exhibited task-related activity in relation to at least one task event in both tasks. Among them, 41 neurons exhibited directional cue-period activity, most of which encoded the location of the visual cue. Among 56 neurons with directional delay-period activity, 86% encoded the location of the visual cue, whereas 13% encoded the direction of the saccade. Among 57 neurons with directional response-period activity, 58% encoded the direction of the saccade, whereas 35% encoded the location of the visual cue. Most neurons whose response-period activity encoded the location of the visual cue also exhibited directional delay-period activity that encoded the location of the visual cue as well. The best directions of these two activities were identical, and most of these response-period activities were postsaccadic. Therefore this postsaccadic activity can be considered a signal to terminate unnecessary delay-period activity. Population histograms encoding the location of the visual cue showed tonic sustained activation during the delay period. However, population histograms encoding the direction of the saccade showed a gradual increase in activation during the delay period. These results indicate that the transformation from visual input to motor output occurs in the dorsolateral prefrontal cortex. The analysis using population histograms suggests that this transformation occurs gradually during the delay period.
机译:为了检查在空间工作记忆过程中与任务相关的活动编码的信息类型,我们分析了前额叶皮层中的单个神经元活动,而两只猴子则执行了两种不同的动眼延迟反应(ODR)任务。在标准的ODR任务中,要求猴子在3秒钟的延迟后对提示位置进行扫视,而在旋转ODR(R-ODR)任务中,要求它们从提示位置顺时针旋转90度3秒延迟后。通过比较这两个任务中与任务相关的活动,我们可以确定这些活动是编码视觉提示的位置还是扫视的方向。相对于两个任务中的至少一个任务事件,一百一十一个神经元表现出与任务相关的活动。其中,有41个神经元表现出定向的提示时期活动,其中大多数编码视觉提示的位置。在具有定向延迟期活动的56个神经元中,有86%编码了视觉提示的位置,而13%编码了扫视的方向。在具有方向性响应周期活动的57个神经元中,58%编码了扫视的方向,而35%编码了视觉提示的位置。响应周期活动编码视觉提示的位置的大多数神经元也表现出定向的延迟周期活动也编码视觉提示的位置。这两项活动的最佳方向是相同的,并且大多数这些响应期活动都是课后活动。因此,这种课外活动可以视为终止不必要的延迟活动的信号。编码视觉提示位置的人口直方图显示,在延迟期间,补品持续激活。但是,编码扫视方向的人口直方图显示,在延迟期间,激活程度逐渐增加。这些结果表明,从视觉输入到运动输出的转换发生在背外侧前额叶皮层。使用总体直方图进行的分析表明,这种转换在延迟期间逐渐发生。

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