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Brain Activation of Identity Switching in Multiple Identity Tracking Task

机译:多重身份跟踪任务中身份转换的大脑激活

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摘要

When different objects switch identities in the multiple identity tracking (MIT) task, viewers need to rebind objects’ identity and location, which requires attention. This rebinding helps people identify the regions targets are in (where they need to focus their attention) and inhibit unimportant regions (where distractors are). This study investigated the processing of attentional tracking after identity switching in an adapted MIT task. This experiment used three identity-switching conditions: a target-switching condition (where the target objects switched identities), a distractor-switching condition (where the distractor objects switched identities), and a no-switching condition. Compared to the distractor-switching condition, the target-switching condition elicited greater activation in the frontal eye fields (FEF), intraparietal sulcus (IPS), and visual cortex. Compared to the no-switching condition, the target-switching condition elicited greater activation in the FEF, inferior frontal gyrus (pars orbitalis) (IFG-Orb), IPS, visual cortex, middle temporal lobule, and anterior cingulate cortex. Finally, the distractor-switching condition showed greater activation in the IFG-Orb compared to the no-switching condition. These results suggest that, in the target-switching condition, the FEF and IPS (the dorsal attention network) might be involved in goal-driven attention to targets during attentional tracking. In addition, in the distractor-switching condition, the activation of the IFG-Orb may indicate salient change that pulls attention away automatically.
机译:当不同的对象在多身份跟踪(MIT)任务中切换身份时,查看者需要重新绑定对象的身份和位置,这需要引起注意。这种重新绑定可以帮助人们确定目标所处的区域(他们需要集中注意力的区域),并抑制不重要的区域(干扰因素所在的区域)。这项研究调查了适应性MIT任务中身份切换后注意跟踪的处理。该实验使用了三种身份转换条件:目标转换条件(目标对象转换身份),干扰物转换条件(干扰物对象转换身份)和无转换条件。与分心切换条件相比,目标切换条件在额叶视野(FEF),顶内沟(IPS)和视皮层引起更大的激活。与无转换条件相比,目标转换条件在FEF,额额下回(眶眶)(IFG-Orb),IPS,视觉皮层,颞中叶和前扣带回皮层引起更大的激活。最后,与无切换条件相比,干扰物切换条件在IFG-Orb中显示出更大的激活。这些结果表明,在目标切换条件下,FEF和IPS(背侧注意力网络)可能会在注意力跟踪过程中参与目标驱动的目标注意力。另外,在分心器切换条件下,IFG-Orb的激活可能表明显着变化,从而自动将注意力移开。

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