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Orientation congruency effects for familiar objects - Coordinate transformations in object recognition

机译:熟悉对象的方向一致性效果-对象识别中的坐标转换

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How do observers recognize objects after spatial transformations? Recent neurocomputational models have proposed that object recognition is based on coordinate transformations that align memory and stimulus representations. If the recognition of a misoriented object is achieved by adjusting a coordinate system (or reference frame), then recognition should be facilitated when the object is preceded by a different object in the same orientation. In the two experiments reported here, two objects were presented in brief masked displays that were in close temporal contiguity; the objects were in either congruent or incongruent picture-plane orientations. Results showed that naming accuracy was higher for congruent than for incongruent orientations. The congruency effect was independent of superordinate category membership (Experiment 1) and was found for objects with different main axes of elongation (Experiment 2). The results indicate congruency effects for common familiar objects even when they have dissimilar shapes. These findings are compatible with models in which object recognition is achieved by an adjustment of a perceptual coordinate system.
机译:观察者如何在空间变换后识别物体?最近的神经计算模型已经提出对象识别是基于坐标变换的,该坐标变换使存储器和刺激表示对齐。如果通过调整坐标系(或参考系)来实现对方向错误的物体的识别,则当该物体之前是同一方向的另一个物体时,应该便于识别。在这里报告的两个实验中,两个对象以短暂的遮蔽显示形式呈现,它们在时间上是连续的。这些对象的图像平面方向一致或不一致。结果表明,同等方位的命名准确度高于同等方位的命名准确度。一致性效应与上级类别隶属关系无关(实验1),并且发现具有不同主轴伸长率的对象(实验2)。结果表明,即使常见的对象具有不同的形状,它们的一致性效果也一样。这些发现与通过调整感官坐标系来实现物体识别的模型兼容。

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