Page W K, Duffy C J
Department of Neurology, The Center for Visual Science, The University of Rochester Medical Center, Rochester, New York 14642, USA.
J Neurophysiol. 1999 Feb;81(2):596-610. doi: 10.1152/jn.1999.81.2.596.
As you move through the environment, you see a radial pattern of visual motion with a focus of expansion (FOE) that indicates your heading direction. When self-movement is combined with smooth pursuit eye movements, the turning of the eye distorts the retinal image of the FOE but somehow you still can perceive heading. We studied neurons in the medial superior temporal area (MST) of monkey visual cortex, recording responses to FOE stimuli presented during fixation and smooth pursuit eye movements. Almost all neurons showed significant changes in their FOE selective responses during pursuit eye movements. However, the vector average of all the neuronal responses indicated the direction of the FOE during both fixation and pursuit. Furthermore, the amplitude of the net vector increased with increasing FOE eccentricity. We conclude that neuronal population encoding in MST might contribute to pursuit-tolerant heading perception.
当你在环境中移动时,你会看到一种以扩张焦点(FOE)为中心的放射状视觉运动模式,它指示你的前进方向。当自我运动与平稳跟踪眼球运动相结合时,眼球的转动会扭曲FOE的视网膜图像,但不知为何你仍然能够感知前进方向。我们研究了猴子视觉皮层内侧颞上区(MST)的神经元,记录了在注视和平稳跟踪眼球运动期间呈现的FOE刺激的反应。几乎所有神经元在跟踪眼球运动期间其FOE选择性反应都有显著变化。然而,所有神经元反应的向量平均值在注视和跟踪期间都指示了FOE的方向。此外,净向量的幅度随着FOE离心率的增加而增加。我们得出结论,MST中的神经元群体编码可能有助于耐受跟踪的前进感知。