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Scale Changes Provide an Alternative Cue For the Discrimination of Heading, But Not Object Motion

机译:缩放比例变化为区分航向提供了另一种提示,但不能区分物体运动

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BACKGROUND Understanding the dynamics of our surrounding environments is a task usually attributed to the detection of motion based on changes in luminance across space. Yet a number of other cues, both dynamic and static, have been shown to provide useful information about how we are moving and how objects around us move. One such cue, based on changes in spatial frequency, or scale, over time has been shown to be useful in conveying motion in depth even in the absence of a coherent, motion-defined flow field (optic flow). MATERIAL AND METHODS 16 right handed healthy observers (ages 18–28) participated in the behavioral experiments described in this study. Using analytical behavioral methods we investigate the functional specificity of this cue by measuring the ability of observers to perform tasks of heading (direction of self-motion) and 3D trajectory discrimination on the basis of scale changes and optic flow. RESULTS Statistical analyses of performance on the test-experiments in comparison to the control experiments suggests that while scale changes may be involved in the detection of heading, they are not correctly integrated with translational motion and, thus, do not provide a correct discrimination of 3D object trajectories. CONCLUSIONS These results have the important implication for the type of visual guided navigation that can be done by an observer blind to optic flow. Scale change is an important alternative cue for self-motion.
机译:背景技术了解我们周围环境的动态是一项任务,通常归因于基于跨空间亮度变化的运动检测。还显示了许多其他线索,包括动态线索和静态线索,它们提供了有关我们如何移动以及周围物体如何移动的有用信息。已经显示出一种基于空间频率或尺度随时间变化的提示,即使没有连贯的,运动定义的流场(光流),也可用于深度运动。材料与方法16位右撇子健康观察者(18-28岁)参加了本研究中描述的行为实验。使用分析性行为方法,我们通过测量观察者根据尺度变化和光流执行朝向(自我运动的方向)和3D轨迹辨别力的能力来研究此提示的功能特异性。结果与对照实验相比,对测试实验性能的统计分析表明,虽然航向变化可能涉及比例变化,但它们并未与平移运动正确集成,因此无法正确识别3D对象轨迹。结论这些结果对于视觉引导导航的类型具有重要意义,这种视觉引导导航可以由视力不明的观察者完成。尺度变化是自我运动的重要替代线索。

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