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Extensive training leads to temporal and spatial shifts of cortical activity underlying visual category selectivity

机译:广泛的培训导致皮质活动的颞率和空间偏移基础视觉类别选择性

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The human visual system is able to distinguish naturally occurring categories with exceptional speed and accuracy. At the same time, it exhibits substantial plasticity, permitting the seamless and fast learning of entirely novel categories. Here we investigate the interplay of these two processes by asking how category selectivity emerges and develops from initial to extended category learning. For this purpose, we combine a rapid event-related MEG adaptation paradigm, an extension of fMRI adaptation to high temporal resolution, a novel spatiotemporal analysis approach to separate adaptation effects from other effect origins, and source localization. The results demonstrate a spatiotemporal shift of cortical activity underlying category selectivity: after initial category acquisition, the onset of category selectivity was observed starting at 275 ms together with stronger activity in prefrontal cortex. Following extensive training over 22 sessions, adding up to more than 16.600 trials, the earliest category effects occurred at a markedly shorter latency of 113 ms and were accompanied by stronger occipitotemporal activity. Our results suggest that the brain balances plasticity and efficiency by relying on different mechanisms to recognize new and re-occurring categories. (C) 2016 Elsevier Inc. All rights reserved.
机译:人类视觉系统能够以卓越的速度和准确性区分天然存在的类别。与此同时,它表现出实质性的可塑性,允许无缝和快速学习的完全小型类别。在这里,我们通过询问类别选择性如何从初始到扩展类别学习来调查这两个过程的相互作用。为此目的,我们结合了快速事件相关的MEG适应范例,将FMRI适应的扩展到高时分辨率,一种新的时空分析方法,以与其他效果起源的分离适应效果,以及源本地化。结果表明,皮质活动的时尚偏移基础类别选择性:在初始类别获取后,观察到在275毫秒开始,在预逆转皮层中的较强活性开始,观察到类别选择性的开始。在超过22次会议上进行广泛培训后,增加了超过16.600次试验,最早的类别效应发生在113毫秒的显着较短延迟,并伴随着枕型活动更强。我们的研究结果表明,大脑通过依靠不同的机制来识别新的和重新发生的类别来平衡可塑性和效率。 (c)2016 Elsevier Inc.保留所有权利。

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