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Neuronal mechanism for signaling the direction of self-motion

机译:指示自我运动方向的神经元机制

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Abstract: Movement of an observer through the environment generates motion on the retina. This optic flow contains information about the direction of self-motion. To accurately signal the direction of self- motion, however, the optic flow has to carry some depth information: there has to be differential motion of elements at different depths. One depth cue that is available to an organism with frontal eyes is binocular disparity. Cells in the dorsal subdivision of the medial superior temporal area (area MSTd) have been proposed to play a role in the analysis of optic flow. We have examined the disparity sensitivity of neurons from MSTd in awake behaving monkeys in an attempt to understand the possible contribution of disparity to the computation of the direction of self-motion. Cells with a response to fronto-parallel motion were examined. We propose that the reversal of disparity selectivity with a reversal in direction selectivity indicates one way in which these neurons could signal the direction of self-motion of the organism in its environment. !14
机译:摘要:观察者在环境中的运动会在视网膜上产生运动。该光流包含有关自我运动方向的信息。但是,为了准确地表示自运动的方向,光流必须携带一些深度信息:必须在不同深度处进行差动运动。双眼视差是一种可用于额眼生物的深度提示。已经提出内侧上颞叶区域(区域MSTd)的背侧细分中的细胞在光流分析中发挥作用。我们研究了清醒行为猴子中来自MSTd的神经元的视差敏感性,试图了解视差对自我运动方向计算的可能贡献。检查对额平行运动有反应的细胞。我们提出视差选择性的逆转与方向选择性的逆转表明了这些神经元可以向生物体自身环境中的自身运动方向发出信号的一种方式。 !14

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