Crapse Trinity B, Sommer Marc A
Department of Neuroscience, Center for the Neural Basis of Cognition, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
J Neurosci. 2009 Apr 22;29(16):5308-18. doi: 10.1523/JNEUROSCI.4906-08.2009.
The frontal eye field (FEF) is a cortical structure involved in cognitive aspects of eye movement control. Neurons in the FEF, as in most of cerebral cortex, primarily represent contralateral space. They fire for visual stimuli in the contralateral field and for saccadic eye movements made to those stimuli. Yet many FEF neurons engage in sophisticated functions that require flexible spatial representations such as shifting receptive fields and vector subtraction. Such functions require knowledge about all of space, including the ipsilateral hemifield. How does the FEF gain access to ipsilateral information? Here, we provide evidence that one source of ipsilateral information may be the opposite superior colliculus (SC) in the midbrain. We physiologically identified neurons in the FEF that receive input from the opposite SC, same-side SC, or both. We found a striking structure-function relationship: the laterality of the response field of an FEF neuron was predicted by the laterality of its SC inputs. FEF neurons with input from the opposite SC had ipsilateral fields, whereas neurons with input from the same-side SC had contralateral fields. FEF neurons with input from both SCs had lateralized fields that could point in any direction. The results suggest that signals from the two SCs provide each FEF with information about all of visual space, a prerequisite for higher level sensorimotor computations.
额叶眼区(FEF)是一种参与眼动控制认知方面的皮质结构。与大脑皮质的大多数区域一样,FEF中的神经元主要代表对侧空间。它们会因对侧视野中的视觉刺激以及针对这些刺激做出的扫视眼动而放电。然而,许多FEF神经元参与复杂的功能,这些功能需要灵活的空间表征,如转移感受野和向量减法。此类功能需要了解包括同侧半视野在内的整个空间信息。FEF是如何获取同侧信息的呢?在这里,我们提供证据表明,同侧信息的一个来源可能是中脑对侧的上丘(SC)。我们通过生理学方法鉴定了FEF中接受对侧SC、同侧SC或两者输入的神经元。我们发现了一种显著的结构 - 功能关系:FEF神经元反应野的偏向性可由其SC输入的偏向性预测。接受对侧SC输入的FEF神经元具有同侧视野,而接受同侧SC输入的神经元具有对侧视野。接受双侧SC输入的FEF神经元具有可指向任何方向的偏向性视野。结果表明,来自双侧SC的信号为每个FEF提供了关于整个视觉空间的信息,这是更高层次感觉运动计算的前提条件。