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首页> 外文期刊>Journal of Computational Neuroscience >Frame of reference transformations in motion perception during smooth pursuit eye movements
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Frame of reference transformations in motion perception during smooth pursuit eye movements

机译:平滑追踪眼睛运动期间运动感知中的参考变换框架

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摘要

Smooth pursuit eye movements change the retinal image velocity of objects in the visual field. In order to change from a retinocentric frame of reference into a head-centric one, the visual system has to take the eye movements into account. Studies on motion perception during smooth pursuit eye movements have measured either perceived speed or perceived direction during smooth pursuit to investigate this frame of reference transformation, but never both at the same time. We devised a new velocity matching task, in which participants matched both perceived speed and direction during fixation to that during pursuit. In Experiment 1, the velocity matches were determined for a range of stimulus directions, with the head-centric stimulus speed kept constant. In Experiment 2, the retinal stimulus speed was kept approximately constant, with the same range of stimulus directions. In both experiments, the velocity matches for all directions were shifted against the pursuit direction, suggesting an incomplete transformation of the frame of reference. The degree of compensation was approximately constant across stimulus direction. We fitted the classical linear model, the model of Turano and Massof (2001) and that of Freeman (2001) to the velocity matches. The model of Turano and Massof fitted the veloc- ity matches best, but the differences between de model fits were quite small. Evaluation of the models and comparison to a few alternatives suggests that further specification of the potential effect of retinal image characteristics on the eye movement signal is needed.
机译:平稳的追踪眼球运动会改变视野中物体的视网膜像速度。为了从以视网膜为中心的参考框架更改为以头为中心的参考框架,视觉系统必须考虑到眼睛的运动。对平滑追踪眼动过程中的运动感知的研究已经测量了平滑追踪过程中的感知速度或感知方向,以研究此参考变换框架,但从未同时进行。我们设计了一项新的速度匹配任务,参与者将固定过程中的感知速度和方向与追逐过程中的速度和方向相匹配。在实验1中,确定了一系列刺激方向的速度匹配,并且以头为中心的刺激速度保持恒定。在实验2中,在相同的刺激方向范围内,视网膜刺激速度保持大致恒定。在这两个实验中,所有方向的速度匹配都相对于追踪方向偏移,这表明参考系的转换不完整。补偿程度在整个刺激方向上大致恒定。我们将经典线性模型,Turano和Massof(2001)以及Freeman(2001)的模型拟合到速度匹配中。 Turano和Massof的模型拟合速度最佳,但模型拟合之间的差异很小。对模型进行评估并与一些替代方案进行比较表明,需要进一步说明视网膜图像特征对眼动信号的潜在影响。

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