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首页> 外文期刊>Journal of Cognitive Neuroscience >Coordinate Frame for Pattern Recognition in Unilateral Spatial Neglect
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Coordinate Frame for Pattern Recognition in Unilateral Spatial Neglect

机译:单边空间忽略中模式识别的坐标系

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The present research examines the effect of spatial (object-centered) attentional constraints on pattern recognition. Four normal subjects and two right-hemisphere-damaged patients with left visual neglect participated in the study. Small, letterlike, prelearned patterns served as stimuli. Short exposure time prevented overt scanpaths during stimulus presentation. Attention was attracted to a central (midsagittal) hation point by precuing this location prior to each stimulus presentation. Minute (up to 1.5° of visual angle) rightward and leftward stimulus shifts caused attention to be allocated each time to a different location on the object space, while remaining in a fixed central position in viewercentered coordinates. The task was to decide which of several prelearned patterns was presented in each trial. In the normal subjects, best performance was achieved when the luminance centroid (LC; derived from the analysis of low-spatial frequencies in the object space) of each pattern coincided with the spatial position of the precue. In contrast, the patients with neglect showed optimal recognition performance when precuing attracted attention to locations within the object space, to the left of the LC. The normal performance suggests that the LC may serve as a center of gravity for attention allocation during pattern recognition. This point seems to be the target location where focal attention is normally directed, following a primary global analysis based on the low spatial frequencies. Thus, the LC of a simple pattern may serve as the origin point for an object-centered-coordiate-frame (OCCF), dividing it into right and left. This, in turn, serves to create a prototype description of the pattern, in its own coordinates, in memory, to be addressed during subsequent recognition tasks. The best match of the percept with the stored description may explain the observed advantage of allocating attention to the LC. The performance of the brain- damaged patients ca- be explained in terms of neglect operating in the OCCE
机译:本研究研究了空间(以对象为中心)注意约束对模式识别的影响。 4名正常受试者和2名左半球受损的右半球受损患者参加了该研究。小的,类似字母的,预先学习的模式可以作为刺激。较短的曝光时间可避免刺激刺激过程中明显的扫描路径。通过在每次刺激演示之前确定此位置,将注意力吸引到中央(矢状)中枢点。向左和向右微小的刺激变化(最大1.5度)导致每次注意力都分配给对象空间上的其他位置,同时保持在以观察者为中心的坐标中的固定中心位置。任务是决定在每个试验中介绍几种预先学习的模式中的哪一种。在正常对象中,当每个模式的亮度质心(LC;源于对对象空间中低空间频率的分析得出)与精确度的空间位置一致时,可以获得最佳性能。相比之下,疏忽大意的患者表现出最佳的识别性能,这是因为在进行注意力吸引时,注意对象空间中LC左侧的位置。正常性能表明,LC可以用作模式识别期间注意力分配的重心。根据基于低空间频率的主要全局分析,此点似乎是通常将注意力集中在目标位置。因此,简单模式的LC可以用作对象居中坐标帧(OCCF)的起点,将其分为左右两部分。反过来,这用于在存储器中创建其自身坐标中的模式原型描述,以在后续识别任务中解决。感知与所存储描述的最佳匹配可以解释观察到的将注意力分配给LC的优势。脑损伤患者的表现可以用OCCE中的疏忽来解释

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