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额眼区对面部快速移动目标视觉表象的独特贡献。

A distinct contribution of the frontal eye field to the visual representation of saccadic targets.

机构信息

Department of Neurobiology, Stanford University School of Medicine, Stanford, California 94305, and Howard Hughes Medical Institute, Stanford, California 94305.

出版信息

J Neurosci. 2014 Mar 5;34(10):3687-98. doi: 10.1523/JNEUROSCI.3824-13.2014.

Abstract

The responses of neurons within posterior visual cortex are enhanced when response field (RF) stimuli are targeted with saccadic eye movements. Although the motor-related activity within oculomotor structures seems a likely source of the enhancement, the origin of the modulation is unknown. We tested the role of the frontal eye field (FEF) in driving presaccadic modulation in area V4 by inactivating FEF neurons at retinotopically corresponding sites within the macaque monkey (Macaca mulatta) brain. As previously observed, FEF inactivation produced profound, and spatially specific, deficits in memory-guided saccades, and increased the latency, scatter, and duration of visually guided saccades. Despite the clear behavioral deficits, we found that rather than being eliminated or reduced by FEF inactivation, presaccadic enhancement of V4 activity was increased. FEF inactivation nonetheless diminished the stimulus discriminability of V4 visual responses both during fixation and in the presaccadic period. Thus, without input from the FEF, V4 neurons signaled more about the direction of saccades and less about the features of the saccadic target. In addition, FEF inactivation significantly increased the suppressive effects of non-RF stimuli on V4 activity. These results reveal multiple sources of presaccadic modulation in V4 and suggest that the FEF contributes uniquely to the presaccadic specification of visual target features.

摘要

当视觉后区的神经元的感受野(RF)受到眼跳的刺激时,它们的反应会增强。虽然眼球运动结构中的运动相关活动似乎是增强的一个可能来源,但这种调制的起源尚不清楚。我们通过在恒河猴(Macaca mulatta)大脑中与视场(RF)对应的位置上使额眼区(FEF)神经元失活,测试了 FEF 在驱动 V4 前眼动调制中的作用。如前所述,FEF 失活导致记忆引导的眼跳产生深刻的、空间特异性的缺陷,并增加了视觉引导的眼跳的潜伏期、散布和持续时间。尽管存在明显的行为缺陷,但我们发现,前眼动增强的 V4 活动并没有因 FEF 失活而被消除或减少。FEF 失活虽然在注视和前眼动期间都降低了 V4 视觉反应的刺激可辨别性。因此,没有 FEF 的输入,V4 神经元对眼跳方向的信号更强,而对眼跳目标的特征的信号则更弱。此外,FEF 失活显著增加了非 RF 刺激对 V4 活动的抑制作用。这些结果揭示了 V4 中前眼动调制的多个来源,并表明 FEF 独特地参与了视觉目标特征的前眼动指定。

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