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FEFsem neuronal response during combined volitional and reflexive pursuit

机译:自主和自觉联合追求过程中的FEFsem神经元反应

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Although much is known about volitional and reflexive smooth eye movements individually, much less is known about how they are coordinated. It is hypothesized that separate cortico-ponto-cerebellar loops subserve these different types of smooth eye movements. Specifically, the MT-MST-DLPN pathway is thought to be critical for ocular following eye movements, whereas the FEF-NRTP pathway is understood to be vital for volitional smooth pursuit. However, the role that these loops play in combined volitional and reflexive behavior is unknown. We used a large, textured background moving in conjunction with a small target spot to investigate the eye movements evoked by a combined volitional and reflexive pursuit task. We also assessed the activity of neurons in the smooth eye movement subregion of the frontal eye field (FEFsem). We hypothesized that the pursuit system would show less contribution from the volitional pathway in this task, owing to the increased involvement of the reflexive pathway. In accordance with this hypothesis, a majority of FEFsem neurons (63%) were less active during pursuit maintenance in a combined volitional and reflexive pursuit task than during purely volitional pursuit. Interestingly and surprisingly, the neuronal response to the addition of the large-field motion was highly correlated with the neuronal response to a target blink. This suggests that FEFsem neuronal responses to these different perturbationsa??whether the addition or subtraction of retinal inputa??may be related. We conjecture that these findings are due to changing weights of both the volitional and reflexive pathways, as well as retinal and extraretinal signals.
机译:尽管人们对眼睛的自主和反射性平滑运动知之甚少,但如何协调它们却知之甚少。假设分离的皮质-脑桥-小脑环可为这些不同类型的平滑眼球运动提供帮助。具体而言,MT-MST-DLPN途径被认为对于眼睛跟随眼球运动至关重要,而FEF-NRTP途径被认为对于自愿平稳追踪至关重要。但是,这些循环在结合的自主和自反行为中所起的作用尚不清楚。我们使用了一个较大的,带纹理的背景并结合了一个小的目标点,来研究由自愿和自觉性追求相结合而引起的眼睛运动。我们还评估了额叶视野(FEFsem)的平滑眼球运动子区域中神经元的活动。我们假设由于自反途径的参与性增加,追求系统在此任务中将显示出较少来自自愿途径的贡献。根据该假设,在联合的自愿和自反追逐任务中,维持追踪过程中的大多数FEFsem神经元(63%)的活动性低于纯自愿性追逐期间。有趣且令人惊讶的是,对增加大视野运动的神经元反应与对目标眨眼的神经元反应高度相关。这表明FEFsem对这些不同摄动的神经元反应-可能是视网膜输入的增加还是减少-可能是相关的。我们推测,这些发现是由于自主和反射途径以及视网膜和视网膜外信号的权重变化所致。

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