首页> 外文期刊>Neuropsychologia >Successful training of filtering mechanisms in multiple object tracking does not transfer to filtering mechanisms in a visual working memory task: Behavioral and electrophysiological evidence
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Successful training of filtering mechanisms in multiple object tracking does not transfer to filtering mechanisms in a visual working memory task: Behavioral and electrophysiological evidence

机译:在多目标跟踪中成功训练过滤机制不会转移到视觉工作记忆任务中的过滤机制:行为和电生理证据

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In this training study, we aimed to selectively train participants' filtering mechanisms to enhance visual working memory (WM) efficiency. The highly restricted nature of visual WM capacity renders efficient filtering mechanisms crucial for its successful functioning. Filtering efficiency in visual WM can be measured via the lateralized change detection task with distractors. From an array of items, only a subsample must be memorized (targets), whereas distractors must be filtered out. From the EEG recorded while items are maintained in memory, slow potentials over posterior recording sides can be extracted. In addition, the contralateral delay activity (CDA) can be calculated as the difference wave between contralateral and ipsilateral slow potentials. As the amplitudes of contralateral slow potentials and CDA reflect the number of remembered items, one can infer if distractors were filtered out. Efficient filtering mechanisms are also highly important in multiple object tracking (MOT). We trained participants' filtering ability with the aid of this latter task. Filtering in both tasks is assumed to happen via allocation of selective attention. We observed large training-induced improvements in MOT. However, these improvements did not transfer to improved filtering mechanisms in the change detection task. Instead, we obtained suggestive evidence for an overall improvement in filtering mechanisms in the change detection task for both the training and control group. Apparently, there exist differences in the exact nature of filtering mechanisms that operate in change detection and MOT.
机译:在本培训研究中,我们旨在选择性地培训参与者的过滤机制,以增强视觉工作记忆(WM)的效率。视觉WM容量的高度受限特性使有效的过滤机制对其成功运行至关重要。视觉WM中的过滤效率可通过带有干扰物的侧向变化检测任务来测量。从一系列项目中,仅必须记住一个子样本(目标),而干扰物必须被过滤掉。从在将项目保留在内存中时记录的EEG中,可以提取出后记录侧的缓慢电位。另外,对侧延迟活动(CDA)可以计算为对侧和同侧慢电位之间的差异波。由于对侧慢电位和CDA的幅度反映了记住的项目的数量,因此可以推断出干扰物是否被滤除。高效的过滤机制在多对象跟踪(MOT)中也非常重要。借助后一项任务,我们训练了参与者的过滤能力。假定通过分配选择性注意力来完成两个任务中的过滤。我们观察到大量训练导致的MOT改善。但是,这些改进并未转移到变更检测任务中改进的过滤机制上。取而代之的是,我们获得了针对培训组和对照组的变更检测任务中的过滤机制的整体改进的暗示性证据。显然,在变化检测和MOT中运行的过滤机制的确切性质存在差异。

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