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Drawing skill is related to the efficiency of encoding object structure

机译:绘图技巧与编码对象结构的效率有关

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摘要

Accurate drawing calls on many skills beyond simple motor coordination. A good internal representation of the target object's structure is necessary to capture its proportion and shape in the drawing. Here, we assess two aspects of the perception of object structure and relate them to participants' drawing accuracy. First, we assessed drawing accuracy by computing the geometrical dissimilarity of their drawing to the target object. We then used two tasks to evaluate the efficiency of encoding object structure. First, to examine the rate of temporal encoding, we varied presentation duration of a possible versus impossible test object in the fovea using two different test sizes (8° and 28°). More skilled participants were faster at encoding an object's structure, but this difference was not affected by image size. A control experiment showed that participants skilled in drawing did not have a general advantage that might have explained their faster processing for object structure. Second, to measure the critical image size for accurate classification in the periphery, we varied image size with possible versus impossible object tests centered at two different eccentricities (3° and 8°). More skilled participants were able to categorise object structure at smaller sizes, and this advantage did not change with eccentricity. A control experiment showed that the result could not be attributed to differences in visual acuity, leaving attentional resolution as a possible explanation. Overall, we conclude that drawing accuracy is related to faster encoding of object structure and better access to crowded details.
机译:精确的绘图需要简单的运动协调之外的许多技能。要在图形中捕获其比例和形状,必须对目标对象的结构进行良好的内部表示。在这里,我们评估对象结构感知的两个方面,并将它们与参与者的绘图精度相关联。首先,我们通过计算绘图与目标对象的几何差异来评估绘图准确性。然后,我们使用两个任务来评估编码对象结构的效率。首先,为了检查时间编码的速率,我们使用两种不同的测试尺寸(8°和28°)改变了中央凹中可能的或不可能的测试对象的呈现持续时间。技术娴熟的参与者在编码对象的结构时速度更快,但是这种差异不受图像大小的影响。对照实验表明,熟练的绘图参与者没有普遍的优势,这也许可以解释他们对对象结构的更快处理。其次,为了测量关键图像尺寸以在外围进行精确分类,我们以两个不同的偏心率(3°和8°)为中心,通过可能的和不可能的物体测试来改变图像尺寸。熟练的参与者能够以较小的尺寸对对象结构进行分类,并且这种优势不会随偏心率而改变。对照实验表明,该结果不能归因于视敏度的差异,而将注意力分辨率留作可能的解释。总的来说,我们得出结论,绘图精度与对象结构的更快编码和对拥挤细节的更好访问有关。

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