Brain and Mind Institute, London, ON, Canada.
Cereb Cortex. 2014 May;24(5):1373-88. doi: 10.1093/cercor/bhs424. Epub 2013 Jan 10.
Of the many functions ascribed to the dorsolateral prefrontal cortex (DLPFC), the ability to override automatic stimulus-driven behavior is one of the most prominent. This ability has been investigated extensively with the antisaccade task, which requires suppression of saccades toward suddenly appearing visual stimuli. Convergent lines of evidence have supported a model in which the DLPFC suppresses unwanted saccades by inhibiting saccade-related activity in the ipsilateral superior colliculus (SC), a midbrain oculomotor structure. Here, we carried out a direct test of this inhibitory model using unilateral cryogenic deactivation of the DLPFC within the caudal principal sulcus (cPS) and simultaneous single-neuron recording of SC saccade-related neurons in monkeys performing saccades and antisaccades. Contrary to the inhibition model, which predicts that attenuation of inhibition effected by unilateral cPS deactivation should result in activity increases in ipsilateral and decreases in contralateral SC, we observed a delayed onset of saccade-related activity in the ipsilateral SC, and activity increases in the contralateral SC. These effects were mirrored by increased error rates of ipsiversive antisaccades, and reaction times of contraversive saccades. These data challenge the inhibitory model and suggest instead that the primary influence of the DLPFC on the SC is excitatory.
背外侧前额叶皮层(DLPFC)具有许多功能,其中之一是能够抑制自动的、由刺激驱动的行为。在反扫视任务中,人们对这种能力进行了广泛的研究,该任务要求抑制对突然出现的视觉刺激的扫视。有几条证据线索支持这样一种模型:DLPFC 通过抑制同侧上丘(中脑的眼球运动结构)中的扫视相关活动来抑制不需要的扫视。在这里,我们通过在猴子执行扫视和反扫视任务时,在尾侧主沟(cPS)内对 DLPFC 进行单侧冷冻消融,并同时对 SC 的扫视相关神经元进行单细胞记录,直接检验了这种抑制模型。与抑制模型相反,该模型预测单侧 cPS 失活导致的抑制作用减弱,应导致同侧 SC 的活动增加和对侧 SC 的活动减少,但我们观察到同侧 SC 中的扫视相关活动延迟出现,对侧 SC 的活动增加。这些影响反映在同侧反扫视的错误率增加和对侧扫视的反应时间增加上。这些数据对抑制模型提出了挑战,表明 DLPFC 对 SC 的主要影响是兴奋性的。