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Joint representation of translational and rotational components of optic flow in parietal cortex

机译:顶叶皮层光流平移和旋转分量的联合表示

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摘要

Terrestrial navigation naturally involves translations within the horizontal plane and eye rotations about a vertical (yaw) axis to track and fixate targets of interest. Neurons in the macaque ventral intraparietal (VIP) area are known to represent heading (the direction of self-translation) from optic flow in a manner that is tolerant to rotational visual cues generated during pursuit eye movements. Previous studies have also reported that eye rotations modulate the response gain of heading tuning curves in VIP neurons. We tested the hypothesis that VIP neurons simultaneously represent both heading and horizontal (yaw) eye rotation velocity by measuring heading tuning curves for a range of rotational velocities of either real or simulated eye movements. Three findings support the hypothesis of a joint representation. First, we show that rotation velocity selectivity based on gain modulations of visual heading tuning is similar to that measured during pure rotations. Second, gain modulations of heading tuning are similar for self-generated eye rotations and visually simulated rotations, indicating that the representation of rotation velocity in VIP is multimodal, driven by both visual and extraretinal signals. Third, we show that roughly one-half of VIP neurons jointly represent heading and rotation velocity in a multiplicatively separable manner. These results provide the first evidence, to our knowledge, for a joint representation of translation direction and rotation velocity in parietal cortex and show that rotation velocity can be represented based on visual cues, even in the absence of efference copy signals.
机译:地面导航自然涉及水平面内的平移以及眼睛围绕垂直(偏航)轴的旋转,以跟踪和固定感兴趣的目标。已知猕猴腹顶内(VIP)区域中的神经元可以耐受视线运动过程中产生的旋转视觉提示,从而表示来自视流的航向(自平移方向)。先前的研究还报告说,眼球旋转会调节VIP神经元中航向调整曲线的响应增益。我们通过测量真实或模拟眼睛运动的一系列旋转速度的航向调谐曲线,测试了VIP神经元同时代表航向和水平(偏转)眼旋转速度的假设。三个发现支持联合表示的假设。首先,我们表明基于视觉航向调整的增益调制的转速选择性与纯旋转期间测得的转速选择性相似。其次,对于自生眼球旋转和视觉模拟旋转,航向调整的增益调制相似,这表明VIP的旋转速度表示是多模态的,受视觉和视网膜外信号驱动。第三,我们证明,大约一半的VIP神经元以可乘可分离的方式共同表示航向和旋转速度。这些结果,就我们所知,为顶叶皮层中翻译方向和旋转速度的联合表示提供了第一个证据,并且表明即使在没有有效复制信号的情况下,旋转速度也可以基于视觉提示来表示。

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