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眼球运动延迟反应执行过程中灵长类动物丘脑背内侧核活动的群体向量分析

Population vector analysis of primate mediodorsal thalamic activity during oculomotor delayed-response performance.

作者信息

Watanabe Yumiko, Takeda Kazuyoshi, Funahashi Shintaro

机构信息

Department of Cognitive and Behavioral Sciences, Graduate School of Human and Environmental Studies, Kyoto University, Kyoto, Japan.

出版信息

Cereb Cortex. 2009 Jun;19(6):1313-21. doi: 10.1093/cercor/bhn170. Epub 2008 Oct 1.

Abstract

To understand functional roles of the thalamic mediodorsal nucleus (MD) in sensory-to-motor information transformation during spatial working memory performance and compare with those of the dorsolateral prefrontal cortex (DLPFC), we calculated population vectors using a population of MD activities recorded during 2 tasks. In the oculomotor delayed-response (ODR) task, monkeys needed to make a memory-guided saccade to the cue location, whereas in the rotatory oculomotor delayed-response (R-ODR) task, they needed to make a memory-guided saccade 90 degrees clockwise from the cue direction. The directions of population vectors calculated from populations of cue- and response-period activities were similar to the cue and saccade target directions, respectively, which confirmed that population vectors represent information regarding the directions of the visual cue and the saccade target. We then calculated population vectors of delay-period activity using a sliding 250-ms time window. In the ODR task, population vectors were directed toward the cue direction throughout the delay. However, in the R-ODR task, they gradually rotated from the cue direction to the saccade target direction. Based on a comparison with the results obtained from DLPFC neurons, the rotation of population vectors started earlier in the MD than in the DLPFC, suggesting that the motor information regarding forthcoming saccade is provided from the MD.

摘要

为了解丘脑背内侧核(MD)在空间工作记忆表现期间感觉信息到运动信息转换中的功能作用,并与背外侧前额叶皮层(DLPFC)的功能作用进行比较,我们使用在两项任务中记录的MD活动群体计算了群体向量。在动眼延迟反应(ODR)任务中,猴子需要根据记忆做出扫视动作,看向提示位置,而在旋转动眼延迟反应(R-ODR)任务中,它们需要根据记忆做出扫视动作,从提示方向顺时针旋转90度。从提示期和反应期活动群体计算出的群体向量方向分别与提示方向和扫视目标方向相似,这证实了群体向量代表了关于视觉提示方向和扫视目标方向的信息。然后,我们使用一个滑动的250毫秒时间窗口计算延迟期活动的群体向量。在ODR任务中,群体向量在整个延迟期都指向提示方向。然而,在R-ODR任务中,它们从提示方向逐渐旋转到扫视目标方向。基于与从DLPFC神经元获得的结果的比较,群体向量的旋转在MD中比在DLPFC中开始得更早,这表明关于即将到来的扫视动作的运动信息是由MD提供的。

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