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The Role of Perceptual Load in Neglect: Rejection of Ipsilesional Distractors is Facilitated with Higher Central Load

机译:知觉负载在忽略中的作用:较高的中心负载有助于排斥牵张肌

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摘要

Neglect is known to produce a bias towards the ipsilesional side. Here we examined whether this bias is automatic or can be modulated by manipulating perceptual load in a relevant task [e.g., Lavie, N. (1995). Perceptual load as a necessary condition for selective attention. Journal of Experimental Psychology: Human Perception and Performance, 21, 451–468]. Three patients with left neglect and three healthy controls made speeded choice responses to a target letter in the center of the display while attempting to ignore an irrelevant distractor presented on left or right. Perceptual load was manipulated by inducing a search for the target that appeared with another central stimulus, which was either a blob (low load) or a nontarget letter (higher load). Response competition effects from ipsilesional distractors were significantly reduced by higher load. The same increase of load, however, did not decrease distractor effects in the control group, as expected [e.g., Lavie, N., & Cox, S. (1997). On the efficiency of attentional selection: Efficient visual search results in inefficient rejection of distraction. Psychological Science, 8, 395-398]. These results demonstrate that ipsilesional bias in neglect is not fully automated and emphasize an additional restriction of perceptual capacity. Moreover, they supported our prediction that reduced perceptual capacity in neglect can lead to improved distractor rejection with just small increases in perceptual load.
机译:众所周知,忽视会向同侧产生偏见。在这里,我们检查了这种偏见是自动的还是可以通过在相关任务中操纵知觉负载来调节的(例如,Lavie,N.(1995)。知觉负荷是选择性注意的必要条件。实验心理学杂志:人类的感知和表现,21,451–468]。三名左疏忽患者和三名健康对照者对显示中心的目标字母做出了快速的选择反应,同时试图忽略左侧或右侧出现的无关紧要的干扰物。通过诱导对出现在另一个中央刺激下的目标的搜索来操纵感知负荷,该目标可能是斑点(低负荷)或非目标字母(较高负荷)。高负荷可显着降低同侧干扰物的反应竞争效应。然而,如预期的那样,负荷的相同增加并未降低对照组的干扰因素[例如,Lavie,N。,&Cox,S。(1997)。关于注意力选择的效率:高效的视觉搜索导致无法有效地分散注意力。心理科学,8,395-398]。这些结果表明,忽略偏见并非完全自动化,并强调了感知能力的其他限制。此外,他们支持我们的预测,即忽略的感知能力降低会导致牵引力排斥反应的改善,而感知负荷的增加很小。

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