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Categorical and coordinate processing in object recognition depends on different spatial frequencies

机译:对象识别中的分类和坐标处理取决于不同的空间频率

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Previous studies have suggested that processing categorical spatial relations requires high spatial frequency (HSF) information, while coordinate spatial relations require low spatial frequency (LSF) information. The aim of the present study was to determine whether spatial frequency influences categorical and coordinate processing in object recognition. Participants performed two object-matching tasks for novel, non-nameable objects consisting of "geons" (c.f. Brain Cogn 71:181-186, 2009). For each original stimulus, categorical and coordinate transformations were applied to create comparison stimuli. These stimuli were high-pass/low-cut-filtered or low-pass/high-cut-filtered by a filter with a 2D Gaussian envelope. The categorical task consisted of the original and categorical-transformed objects. The coordinate task consisted of the original and coordinate-transformed objects. The non-filtered object image was presented on a CRT monitor, followed by a comparison object (non-filtered, high-pass-filtered, and low-pass-filtered stimuli). The results showed that the removal of HSF information from the object image produced longer reaction times (RTs) in the categorical task, while removal of LSF information produced longer RTs in the coordinate task. These results support spatial frequency processing theory, specifically Kosslyn's hypothesis and the double filtering frequency model.
机译:先前的研究表明,处理分类空间关系需要高空间频率(HSF)信息,而坐标空间关系需要低空间频率(LSF)信息。本研究的目的是确定空间频率是否影响对象识别中的分类和坐标处理。参与者针对由“ geons”组成的新型,不可命名的对象执行了两个对象匹配任务(参见Brain Cogn 71:181-186,2009)。对于每个原始刺激,应用类别转换和坐标转换来创建比较刺激。这些刺激通过具有2D高斯包络的滤波器进行高通/低切滤波或低通/高切滤波。分类任务由原始的和分类转换的对象组成。坐标任务由原始对象和坐标转换的对象组成。未过滤的对象图像显示在CRT监视器上,然后显示比较对象(未过滤,高通滤波和低通滤波的刺激)。结果表明,从目标图像中删除HSF信息会在分类任务中产生更长的反应时间(RTs),而从LSF信息中去除则会在坐标任务中产生更长的反应时间。这些结果支持空间频率处理理论,特别是Kosslyn的假设和双重滤波频率模型。

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