...
首页> 外文期刊>Journal of vision >Can observers judge future circular path relative to a target from retinal flow?
【24h】

Can observers judge future circular path relative to a target from retinal flow?

机译:观察者能否根据视网膜血流判断相对于目标的未来循环路径?

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We investigated the ability of observers to judge whether they will pass left or right of a visible target from simulated motion along a circular path. Strategies based on optic flow would generally require compensation for pursuit eye movements. J. P. Wann and D. K. Swapp (2000) proposed an alternative strategy that requires only retinal flow. The experiments compared three conditions that provide the same retinal flow but different observer-relative optic flow. In the heading-relative view condition, simulated view direction rotated with change in heading, as naturally occurs when driving a car. In target-relative view condition, simulated view direction rotated to keep the direction of the target constant. In world-relative view condition, the simulated view direction was fixed relative to the environment. If an observer fixates the target, these conditions produce the same retinal flow. The initial heading direction of simulated motion was varied across trials, and responses were used to compute PSEs representing perceptual bias. Judgments were most accurate in the heading-relative condition. In the target-relative and world-relative view conditions, PSEs indicated large biases consistent with underestimation of path curvature. The large biases suggest that retinal flow is not sufficient to judge future circular path relative to a target.
机译:我们研究了观察者判断其是否会通过模拟运动沿圆形路径通过可见目标的左侧或右侧的能力。基于光流的策略通常需要补偿追赶眼球的运动。 J. P. Wann和D.K. Swapp(2000)提出了一种仅需视网膜血流的替代策略。实验比较了三种条件,它们提供相同的视网膜血流,但提供了相对于观察者的相对视力。在驶向相对视图条件下,模拟视图方向会随着驶向的变化而旋转,就像在驾驶汽车时自然发生的那样。在目标相对视图条件下,模拟视图方向旋转以保持目标方向恒定。在世界相对视图条件下,模拟视图方向相对于环境是固定的。如果观察者将目标固定,则这些条件会产生相同的视网膜血流。在各个试验中,模拟运动的初始航向都不同,并且使用响应来计算表示感知偏差的PSE。航向相对条件下的判断最准确。在相对于目标和相对于世界的视图条件下,PSE表示与路径曲率低估相符的较大偏差。较大的偏倚表明,视网膜血流不足以判断相对于目标的未来循环路径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号