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感觉运动转换会在猕猴的上丘沿背腹方向引发系统性的活动模式。

Sensorimotor transformation elicits systematic patterns of activity along the dorsoventral extent of the superior colliculus in the macaque monkey.

机构信息

1Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA 15260 USA.

2Center for Neural Basis of Cognition, University of Pittsburgh, Pittsburgh, PA 15260 USA.

出版信息

Commun Biol. 2019 Aug 2;2:287. doi: 10.1038/s42003-019-0527-y. eCollection 2019.

Abstract

The superior colliculus (SC) is an excellent substrate to study sensorimotor transformations. To date, the spatial and temporal properties of population activity along its dorsoventral axis have been inferred from single electrode studies. Here, we recorded SC population activity in non-human primates using a linear multi-contact array during delayed saccade tasks. We show that during the visual epoch, information appeared first in dorsal layers and systematically later in ventral layers. During the delay period, the laminar organization of low-spiking rate activity matched that of the visual epoch. During the pre-saccadic epoch, spiking activity emerged first in a more ventral layer, ~ 100 ms before saccade onset. This buildup of activity appeared later on nearby neurons situated both dorsally and ventrally, culminating in a synchronous burst across the dorsoventral axis, ~ 28 ms before saccade onset. Collectively, these results reveal a principled spatiotemporal organization of SC population activity underlying sensorimotor transformation for the control of gaze.

摘要

上丘(SC)是研究感觉运动转换的极佳底物。迄今为止,其沿背腹轴的群体活动的时空特性已从单电极研究中推断出来。在这里,我们在非人类灵长类动物中使用线性多接触阵列在延迟扫视任务期间记录 SC 群体活动。我们表明,在视觉时期,信息首先出现在背层,并且系统地出现在腹层较晚。在延迟期间,低尖峰率活动的层组织与视觉时期相匹配。在预扫视时期,尖峰活动首先出现在更靠近腹侧的层中,在扫视开始前约 100 毫秒。这种活动的积累在稍后出现在背侧和腹侧附近的神经元上,在扫视开始前约 28 毫秒时,在背腹轴上达到同步爆发。总的来说,这些结果揭示了 SC 群体活动在控制凝视的感觉运动转换中的原则性时空组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19dd/6677725/05319f0349a2/42003_2019_527_Fig4_HTML.jpg

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