Dipartimento di Fisiologia Umana e Generale, Università di Bologna, Bologna, Italy.
Neuroscience. 2010 Dec 29;171(4):1241-55. doi: 10.1016/j.neuroscience.2010.09.026. Epub 2010 Sep 24.
The visual perception of self-motion is mainly provided by optic flow. Eyes usually scan the environment during locomotion, and the gaze is not always directed to the focus of expansion (FOE) of the flow field. Such eye movements change the retinal FOE position with respect to the fovea. Here, we assess if optic flow selective neurons in parietal area PEc are modulated by eye position. We recorded single neuron activity during radial optic flow stimulation in two monkeys, varying eye and retinal FOE positions. We found that the majority of PEc neurons are modulated by the FOE retinotopic position with different tuning for expansion and contraction. Although many neurons did not show any gaze field without visual stimulation, the eye position modulated optic flow responses in about half of the cells. These novel results suggest that PEc neurons integrate both visual and eye position signals, and allow us to hypothesize their role in guiding locomotion as a part of a cortical network involved in FOE representation during self-motion. Visual and eye position interaction in this area could be seen as a contribution to the building of the invariant space representation necessary to motor planning.
自我运动的视觉感知主要由光流提供。眼睛在运动过程中通常会扫视环境,而且目光并不总是指向流场的焦点扩展(FOE)。这种眼球运动改变了视网膜 FOE 相对于中央凹的位置。在这里,我们评估顶叶区域 PEc 中的光流选择神经元是否会被眼位调制。我们在两只猴子中记录了径向光流刺激期间的单个神经元活动,改变了眼位和视网膜 FOE 位置。我们发现,大多数 PEc 神经元会被 FOE 视网膜拓扑位置调制,具有不同的扩张和收缩调谐。尽管许多神经元在没有视觉刺激的情况下没有表现出任何注视场,但大约一半的细胞的眼位会调制光流反应。这些新的结果表明,PEc 神经元整合了视觉和眼位信号,并使我们能够假设它们在引导运动中的作用,作为参与自我运动中 FOE 表示的皮质网络的一部分。该区域的视觉和眼位相互作用可以被视为构建运动规划所需不变空间表示的贡献。