【2h】

Higher-order thalamic relays burst more than first-order relays

机译:高阶丘脑继电器比一阶继电器爆裂更多

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摘要

There is a strong correlation between the behavior of an animal and the firing mode (burst or tonic) of thalamic relay neurons. Certain differences between first- and higher-order thalamic relays (which relay peripheral information to the cortex versus information from one cortical area to another, respectively) suggest that more bursting might occur in the higher-order relays. Accordingly, we recorded bursting behavior in single cells from awake, behaving rhesus monkeys in first-order (the lateral geniculate nucleus, the ventral posterior nucleus, and the ventral portion of the medial geniculate nucleus) and higher-order (pulvinar and the medial dorsal nucleus) thalamic relays. We found that the extent of bursting was dramatically greater in the higher-order than in the first-order relays, and this increased bursting correlated with lower spontaneous activity in the higher-order relays. If bursting effectively signals the introduction of new information to a cortical area, as suggested, this increased bursting may be more important in corticocortical transmission than in transmission of primary information to cortex.
机译:动物的行为与丘脑中继神经元的发射方式(爆发或强直)之间有很强的相关性。一阶和高阶丘脑中继器之间的某些区别(分别将外围信息中继到皮层与信息从一个皮层区域传输到另一个皮层区域)表明,高阶中继器中可能会发生更多的突发事件。因此,我们记录了清醒的单个细胞的爆裂行为,表现为恒河猴处于一级(外侧膝状核,腹侧后核和内侧膝状核的腹侧部分)和较高级(鼻背和内侧背侧)核)丘脑中继。我们发现,高阶中继中的突发程度明显大于一阶中继,并且这种突发增加与高阶中继中较低的自发活动相关。如建议的那样,如果猝发有效地表明向皮层区域引入了新的信息,则这种增加的猝发在皮层皮质传输中比在将主要信息传输至皮质中更为重要。

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