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猕猴额叶眼区和辅助眼区扫视前活动与扫视启动的关系:泊松脉冲序列分析

Relationship of presaccadic activity in frontal eye field and supplementary eye field to saccade initiation in macaque: Poisson spike train analysis.

作者信息

Hanes D P, Thompson K G, Schall J D

机构信息

Department of Psychology, Vanderbilt University, Nashville, TN 37240, USA.

出版信息

Exp Brain Res. 1995;103(1):85-96. doi: 10.1007/BF00241967.

Abstract

The purpose of this study was to investigate the temporal relationship between presaccadic neuronal discharges in the frontal eye fields (FEF) and supplementary eye fields (SEF) and the initiation of saccadic eye movements in macaque. We utilized an analytical technique that could reliably identify periods of neuronal modulation in individual spike trains. By comparing the observed activity of neurons with the random Poisson distribution generated from the mean discharge rate during the trial period, the period during which neural activity was significantly elevated with a predetermined confidence level was identified in each spike train. In certain neurons, bursts of action potentials were identified by determining the period in each spike train in which the activation deviated most from the expected Poisson distribution. Using this method, we related these defined periods of modulation to saccade initiation in specific cell types recorded in FEF and SEF. Cells were recorded in SEF while monkeys made saccades to targets presented alone. Cells were recorded in FEF while monkeys made saccades to targets presented alone or with surrounding distractors. There were no significant differences in the time-course of activity of the population of FEF presaccadic movement cells prior to saccades generated to singly presented or distractor-embedded targets. The discharge of presaccadic movement cells in FEF and SEF could be subdivided quantitatively into an early prelude followed by a high-rate burst of activity that occurred at a consistent interval before saccade initiation. The time of burst onset relative to saccade onset in SEF presaccadic movement cells was earlier and more variable than in FEF presaccadic movement cells. The termination of activity of another population of SEF neurons, known as preparatory set cells, was time-locked to saccade initiation. In addition, the cessation of SEF preparatory set cell activity coincided precisely with the beginning of the burst of SEF presaccadic movement cells. This finding raises the possibility that SEF preparatory set cells may be involved in saccade initiation by regulating the activation of SEF presaccadic movement cells. These results demonstrate the utility of the Poisson spike train analysis to relate periods of neuronal modulation to behavior.

摘要

本研究的目的是调查猕猴额叶眼区(FEF)和辅助眼区(SEF)的扫视前神经元放电与扫视眼动起始之间的时间关系。我们采用了一种分析技术,该技术能够可靠地识别单个脉冲序列中的神经元调制周期。通过将观察到的神经元活动与试验期间平均放电率产生的随机泊松分布进行比较,在每个脉冲序列中确定神经活动在预定置信水平下显著升高的时期。在某些神经元中,通过确定每个脉冲序列中激活偏离预期泊松分布最大的时期来识别动作电位爆发。使用这种方法,我们将这些定义的调制周期与在FEF和SEF中记录的特定细胞类型的扫视起始相关联。当猴子向单独呈现的目标进行扫视时,在SEF中记录细胞。当猴子向单独呈现或带有周围干扰物的目标进行扫视时,在FEF中记录细胞。对于向单独呈现或嵌入干扰物的目标产生的扫视之前,FEF扫视前运动细胞群体的活动时间进程没有显著差异。FEF和SEF中扫视前运动细胞的放电可以定量地细分为早期前奏,随后是在扫视起始前以一致间隔出现的高频率活动爆发。SEF扫视前运动细胞中爆发开始相对于扫视开始的时间比FEF扫视前运动细胞更早且更具变化性。另一群SEF神经元,即准备集细胞,其活动终止与扫视起始时间锁定。此外,SEF准备集细胞活动的停止与SEF扫视前运动细胞爆发的开始精确重合。这一发现增加了SEF准备集细胞可能通过调节SEF扫视前运动细胞的激活而参与扫视起始的可能性。这些结果证明了泊松脉冲序列分析在将神经元调制周期与行为相关联方面的效用。

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